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Global Nanocomposites Market Analysis, Trends, Development and Growth Opportunities by Forecast 2034
Nanocomposites Market Research, 2034
The Nanocomposites market is predicted to develop at a compound annual growth rate (CAGR) of 16.5% from 2024 to 2034, when it is projected to reach USD 18,493.53 Million in 2034, based on an average growth pattern. The market is estimated to reach a value of USD 5,638.47 Million in 2024.
A ductile alloy or metal matrix makes up metal matrix nanocomposites (MMNC). These materials combine the toughness and ductility of ceramics with the strength and modulus of metals. Therefore, MMNCs can be used to produce materials that need to have high strength in procedures involving shear or compression as well as high service temperature capabilities.
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Nanocomposites Market Trends:
The development of transparent conductive films (TCF) using carbon nanotubes (CNT) is one of the well-known uses of these composites. Currently, indium tin oxide is utilized in the production of TCFs. The improved, inexpensive, and superior CNT-based transparent films will take the place of the conventional TCF thanks to recent technological advancements in CNT manufacturing. Arc discharge, chemical vapor deposition, and laser vaporization are three significant and improved commercial production techniques that are chosen over traditional synthesis techniques. These are less complicated and more straightforward ways to get premium CNT. Advanced techniques such as Combustion Chemical Vapor Deposition (CCVD) and Plasma Enhanced Chemical Vapor Deposition (PECVD) are frequently employed in the production of Single-Walled Carbon Nanotubes.
Nanocomposites market Segments
By Nanoparticles Type
Nanofiber
Carbon Nanotube
Graphene
Metal Oxide
Nanoclay
Others
By Matrix Material
Polymer
Metal
Ceramic
By Application
Automotive
Aerospace & Defense
Electronics & Semiconductor
Packaging
Energy
Medical & Healthcare
Others
Key Market Players
Arkema SA
BASF SE
Cabot Corporation
Elementis plc
Evonik Industries AG
Inframat Corporation
Nanocor Inc.
Showa Denko K.K.
3M Company
Zyvex Technologies
Other
Challenges and Opportunities in the Nanocomposites Market:
High Production Costs: The production of nanocomposites can be expensive, limiting their widespread adoption.
Regulatory Concerns: Ensuring the safe and responsible use of nanocomposites requires stringent regulations and standards.
Market Penetration: Expanding market penetration in emerging industries and regions presents opportunities for growth.
Applications of Nanocomposites Across Industries:
Automotive: Lightweight components, improved fuel efficiency, enhanced safety features
Aerospace: High-strength, heat-resistant materials for aircraft component
Electronics: Conductive materials for printed circuit boards, energy storage devices, and sensors
Construction: Durable, lightweight building materials with improved insulation properties
Healthcare: Medical devices, drug delivery systems, and tissue engineering
Nanocomposites Industry: Regional Analysis
North America Market Forecast
With over 38% of the global market share in 2023, North America is the market leader for nanocomposites. In terms of nanocomposites' invention, uptake, and research and development, the US and Canada are leaders in a number of areas, including aerospace, automotive, electronics, and healthcare. robust technological foundation, R&D expenditures, and the need for materials that are lightweight and highly effective.
Europe Market Statistics
Europe is a significant market for nanocomposites, driven by developments in industrial applications, strict environmental restrictions, and sustainability programs. Important contributors are the UK, France, and Germany. Pay attention to the development of the building and packaging industries, automobile lightweighting, and energy efficiency.
Frequently Asked Questions
What is the market size of Nanocomposites Market in 2024?
What is the growth rate for the Nanocomposites Market?
Which are the top companies operating within the market?
Which region dominates the Nanocomposites Market?
Nanocomposites Market Highlights:
Report Features
This is the most thorough study available for market intelligence. In order to maximize commercial value, the report structure has been maintained. Strategic decision making for both current and prospective market participants will be made possible by the crucial insights it offers into the dynamics of the industry. Here are the report's salient characteristics
Market structure: Overview, industry life cycle analysis, supply chain analysis
Market environment analysis: Growth drivers and constraints, Porter’s five forces analysis, SWOT analysis
Market trend and forecast analysis
Market segment trend and forecast
Competitive landscape and dynamics: Market share, application portfolio, application launches, etc.
Attractive market segments and associated growth opportunities
Emerging trends
Strategic growth opportunities for the existing and new players
Key success factors
Future Outlook for the Nanocomposites Market:
Technology breakthroughs, rising demand for high-performance materials, and rising awareness of the advantages of nanocomposites are expected to propel the market's significant rise globally. Nanocomposites are anticipated to have a significant impact on a number of industries as production prices decline and regulatory frameworks develop.
Conclusion:
Materials science could undergo a revolution thanks to nanocomposites, a game-changing breakthrough. Nanocomposites present a promising future because of their remarkable qualities and ability to tackle urgent issues. Keeping up with the current advancements in the industry and investigating the immense possibilities of this novel substance are crucial as it undergoes continuous changes.
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POTENTIAL FOR NANOTECH MATERIALS IN THE INDIAN SEGMENT
Written By: Gargi Sarma, Industry Analyst at Global Launch Base
Figure 1: Availability of Nanotech products and companies in India, 2021 (Source: StatNano)
Foreign companies have several nanotech opportunities in India due to the country's growing focus on research, development, and industrial applications of nanotechnology. Some of the current opportunities for foreign companies in India's nanotech sector include:
Research Collaboration: Collaborating with Indian research institutions, universities, and government agencies can provide access to cutting-edge research facilities and expertise. Partnering with Indian researchers can help foreign companies accelerate their R&D efforts and leverage India's diverse talent pool.
Technology Transfer: Foreign companies can explore opportunities to transfer their nanotechnology expertise, patented technologies, and know-how to Indian partners. This can be done through licensing agreements, joint ventures, or technology transfer initiatives, enabling Indian companies to benefit from foreign advancements.
Manufacturing and Scale-up: India offers a cost-effective manufacturing environment. Foreign companies can set up manufacturing facilities or collaborate with Indian manufacturers to produce nanotech products at a competitive cost. This can help address local demand and potentially serve as a base for exporting to other regions.
Market Penetration: India's large and diverse market provides opportunities for foreign companies to introduce and market their nanotech products. Industries such as electronics, healthcare, energy, agriculture, and textiles offer potential areas for foreign companies to address the evolving needs of Indian consumers and industries.
Strategic Partnerships: Forming strategic partnerships with Indian companies can help foreign firms navigate the local market, leverage existing distribution networks, and gain insights into customer preferences and market dynamics. Such partnerships can accelerate market entry and provide a strong foundation for growth.
Government Initiatives: The Indian government has been actively promoting nanotechnology through various initiatives, funding programs, and research grants. Foreign companies can explore collaborations with Indian government agencies and institutions to participate in these initiatives and access funding support for joint projects.
Skill Development and Training: Foreign companies can contribute to skill development in India's nanotech sector by organizing training programs, workshops, and knowledge-sharing initiatives. This helps build a skilled workforce, fosters technological exchange, and enhances the overall capabilities of the Indian nanotech ecosystem.
Sustainable Solutions: India is actively seeking sustainable and environmentally friendly solutions. Foreign companies specializing in nanomaterials, energy storage, water purification, waste management, and clean technologies can find opportunities to contribute to India's sustainability goals and address local challenges.
Potential for Foreign Nanotech Materials in Various Indian Sectors:
Nanotechnology-focused foreign businesses have the potential to benefit several Indian industries. Their possible contributions are listed below:
Automotive Sector:
Lightweighting: Nanomaterials can greatly reduce the weight of vehicle components while preserving their strength, such as carbon nanotubes, graphene, and nanocomposites. Manufacturers can improve overall performance, lengthen the range of electric vehicles, and increase fuel efficiency by adding these materials to car chassis.
Energy Storage: The ability of batteries used in electric vehicles to store energy can be improved via nanotechnology. The energy density and charging rates of nanostructured materials, such as lithium-sulfur cathodes or silicon-based anodes, can be increased. By addressing the shortcomings of present battery technology, this can increase the viability and consumer appeal of electric vehicles.
Figure 2: Nanotech EV Batteries
Emission Reduction: Nanomaterials have the potential to help cut down on car emissions. To improve the effectiveness of catalytic converters in lowering pollutants like nitrogen oxides (NOx) and carbon monoxide (CO), catalysts based on nanomaterials, such as platinum and palladium nanoparticles, can be utilised. Exhaust gas treatment systems can be developed with the use of nanomaterials.
Sensors and Electronics: Nanotechnology-based sensors and electronics can improve the performance and safety of automobiles. Real-time monitoring of engine performance, tyre pressure, and environmental variables is possible with nanosensors. Advanced driver assistance systems (ADAS) and smart features in vehicles can be made possible by nanoelectronics.
Protective and Anti-corrosion Coatings: Nanocoatings can offer improved defence against rust, abrasion, and UV radiation. Vehicle longevity and aesthetics can be improved by putting nanotech coatings on their surfaces and exteriors, which also lowers maintenance costs and increases durability.
Self-cleaning Surfaces and Anti-fogging: Self-cleaning surfaces and anti-fogging are possible to make using nanomaterials in automobile applications. Water, filth, and pollutants can be repelled by nanocoatings having hydrophobic or superhydrophobic qualities, keeping windows and windscreens clean. This can lessen the need for frequent cleaning while improving visibility and safety.
Smart Interfaces and Displays: Nanotechnology may make it possible to create in-vehicle smart interfaces and displays. Quantum dots, a type of nanomaterial, can increase the functionality and effectiveness of displays by bringing vivid colours, better visibility, and energy efficiency. Nanomaterials that are flexible and transparent may also be employed in future screens and heads-up displays (HUDs).
Nanofluids and Lubricants: To improve the thermal and frictional qualities of engine oils and lubricants, nanoparticles can be added to them. These nanofluids and lubricants can lengthen the useful life of engine parts and increase engine efficiency.
Aerospace Sector:
Structural Reinforcement: Nanomaterials can improve the structural qualities of aeronautical components, providing structural reinforcement. Materials' strength, stiffness, and fatigue resistance can be considerably increased by adding nanofillers, such as nanofibers or nanoparticles. This is especially advantageous for crucial aircraft components like wings, fuselages, and landing gears, which call for high-performance materials.
Figure 3: Nanostructured metals (Source: Los Alamos National Laboratory)
Thermal Control: Nanotechnology-based materials can help thermal control systems in aerospace applications. To increase heat dissipation and lower thermal resistance, high thermal conductivity nanomaterials, like carbon nanotubes or nanodiamonds, can be integrated into heat sinks or thermal interface materials. This is necessary to keep engines, electronic systems, and other heat-generating components operating at their ideal temperatures.
Surface Treatments and Coatings: Nanocoatings can improve the lifetime and performance of aeronautical components. Nanomaterial-based self-healing coatings can fix surface blemishes and offer corrosion and wear resistance. Nanocoatings can also have anti-icing qualities, which lower the possibility of ice building up on aircraft surfaces and increase flight safety.
Figure 4: Nanostructured & nanoscale coating in defence aircraft (Source: Penn State University)
Sensors and Electronics: Nanotechnology-based sensors and electronics can be extremely important in aircraft applications. Critical aircraft components can be monitored for structural health using nanosensors to identify and analyse stress, strain, and fatigue. Nanoelectronics can help create high-performance, lightweight, and miniature electronic systems for control, navigation, and communication in aeronautical vehicles.
Systems for Energy Storage and Power Generation: Nanomaterials can help aircraft systems with energy storage and power production. The performance of batteries and fuel cells used in electric aircraft and unmanned aerial vehicles (UAVs) can be improved by advanced nanotech materials. To capture and transform energy from multiple sources, nanostructured materials can be used in thermoelectric or solar cells.
Aerodynamics and Drag Reduction: Nanotechnology can help make aeronautical vehicles more fuel-efficient by lowering aerodynamic drag. With the help of nanomaterial surface changes like riblets or nanopatterned coatings, airflow patterns can be changed, lowering drag and improving aerodynamic efficiency. This may lead to higher fuel economy and lower operational expenses.
Nautical Sector:
Lightweighting: Nanomaterials with excellent strength-to-weight ratios include carbon nanotubes, graphene, and nanocomposites. Manufacturers can cut weight while retaining structural integrity by using these materials in boat structures. Lighter boats and maritime vessels can travel faster, use less fuel, and emit less pollution.
Corrosion Protection: Nanocoatings can give maritime vessels and offshore structures exceptional corrosion protection. Coatings made of nanomaterials can fend off seawater corrosion, marine environment damage, and fouling. These coatings can lengthen the useful life and durability of maritime equipment while lowering maintenance expenses.
Reduced Drag: Nanotechnology has the potential to improve hydrodynamic performance and reduce drag in the maritime industry. Low-surface-roughness nanocoatings can boost speed and fuel economy by lowering the friction that forms between water and vessel surfaces. This is especially advantageous for ships, yachts, and boats because they use a lot of fuel.
Figure 5: Nanotech Coating (Source: Ship-Technology)
Antifouling Solutions: Nanotechnology materials can be utilised in antifouling coatings to stop marine organisms from growing on vessel surfaces. Nanocoatings with antimicrobial or self-cleaning capabilities can prevent biofouling, minimising the requirement for routine maintenance and cleaning as well as the risk of damage from marine organisms. As a result, fuel efficiency and vessel performance are enhanced.
Energy Harvesting: Nanomaterials can help the maritime industry harvest energy from renewable sources. For instance, boats or buoys can use flexible piezoelectric nanogenerators or solar panels based on nanotechnology to generate electricity from wave motion or sunlight, respectively. This encourages the creation of renewable energy and lessens dependency on conventional energy sources.
Sensors and Electronics: Nanotechnology-based sensors and electronics can improve the navigation, surveillance, and safety systems used in the maritime industry. Real-time monitoring of variables including water quality, temperature, pressure, and structural integrity is possible with the use of nanosensors. Advanced communication technologies, navigational systems, and maritime security solutions can all benefit from nanoelectronics.
Watercraft Propulsion: Nanomaterials have the potential to enhance the effectiveness and performance of propulsion systems in boats and maritime vessels. For instance, nanocoatings can improve the hydrodynamic efficiency of propeller blades and lower fuel consumption by reducing friction. Additionally, the design and functionality of turbines and propellers can be improved using nanotech materials, resulting in an increase in thrust.
Figure 6: Dye-Sensitized Solar Panels (Source: green.unito.it)
Solar Energy: Nanomaterials may help solar cells become more efficient and cost-effective. Higher conversion efficiencies can be achieved by using nanomaterials like quantum dots, perovskite nanocrystals, and others to enhance light absorption, charge separation, and electron transport in solar cells. Advanced solar technologies based on nanotechnology can be developed and adopted in India more quickly through partnerships with foreign businesses.
Energy Storage: Nanotechnology has the potential to completely transform energy storage technologies, overcoming issues with grid stability and intermittency. Batteries, supercapacitors, and other forms of energy storage can all benefit from the use of nanomaterials. For instance, nanoscale electrodes, like nanostructured silicon or graphene, can speed up battery charging and boost energy density. Foreign businesses can help India enhance energy storage solutions by bringing their knowledge and technologies.
Smart Grids and Energy Management: Nanotech materials can help with the development of smart grids and effective energy management systems. Smart grids and energy management. Real-time monitoring, control, and optimisation of energy generation, distribution, and consumption are made possible by nanosensors and nanoelectronics. These innovations can increase grid stability, facilitate demand response initiatives, and boost all-around energy effectiveness.
Energy Efficiency: Nanomaterials can increase the energy efficiency of a variety of energy-related systems and parts. For instance, thermally insulating nanocoatings can lower heat transmission and energy loss in industrial machinery and building structures. By creating better nano phosphors and nano filters for LEDs, nanotechnology can also increase the effectiveness of lighting systems.
Carbon Capture and Storage: Nanomaterials have the potential to be extremely important in carbon capture and storage (CCS) technology. Nanomaterials that have been functionalized are effective at removing carbon dioxide (CO2) from flue gases or industrial pollutants. For the separation, capture, and conversion of CO2, these nanomaterials can be used in adsorbents, membranes, or catalytic systems, assisting in the reduction of greenhouse gas emissions.
Water-Energy Nexus: Nanotechnology can help with the problems that arise when water and energy are combined. By increasing the effectiveness of desalination and water purification procedures, nanomaterials can lower the energy needed to produce clean water. Energy harvesting from water sources, such as kinetic energy from water flow or solar energy conversion on water surfaces, can also be made possible by nanotechnology-based devices.
Smart Energy Systems: The integration of renewable energy sources, storage, and demand-side management can be made easier with the use of nanotech materials. As a result, real-time monitoring, control, and optimisation of energy systems of various sizes are made possible. Nanomaterials can improve the performance of sensors, energy conversion devices, and energy management systems.
Figure 7: Nanotech in Sports (Source: The Institution of Engineering and Technology)
Enhancing Performance: Nanomaterials can enhance sporting goods' performance attributes. Carbon nanotubes, for instance, can be used to improve the strength, stiffness, and responsiveness of golf clubs and tennis rackets. Sports shoes with nanotech coatings can have greater traction, durability, and water resistance, which will improve athletic performance and comfort.
Impact Protection: Impact resistance and protective qualities of sports equipment can be improved using nanomaterials. Helmets, padding, and body armour can all benefit from improved shock absorption and decreased risk of injury provided by nanocomposite materials. Athletes competing in a variety of sports may benefit from greater safety and protection thanks to the usage of nanotech materials in these applications.
Moisture Control: Sports gear made of nanotech materials may have better moisture control capabilities. Fabrics' capacity for rapid drying, moisture wicking, and breathability can all be improved by nanofibers and nanoporous membranes. This lowers the possibility of overheating and discomfort while exercising by assisting athletes in remaining cool, dry, and comfortable.
Odor Control: Nanomaterials can help with odour management in sports gear and equipment. Nanocoatings with antibacterial qualities can stop bacteria from growing and lessen sweat-related odours. This enhances user experience and improves hygiene in sports equipment like shoes, socks, and protective padding.
Wearable Technology: Advanced wearable technology can be developed in the field of sporting goods thanks to nanotechnology. Nanosensors can be incorporated into clothing to continuously track vital signs, bodily motions, and performance measures. Wearable electronics like fitness trackers and smart clothes can be made smaller and more functional with the help of nanoelectronics.
Biomechanical Analysis: Sports biomechanics analysis can be performed using nanomaterials in the form of sensors or coatings. Forces, pressures, and movements can be measured by nanoscale sensors, providing useful information for performance analysis, injury prevention, and rehabilitation. Sports equipment with nanocoatings can offer feedback on technique, enhancing athletes' movements and lowering the chance of overuse injuries.
Environmental Sustainability: Nanotechnology materials can help the sports goods industry be more environmentally sustainable. For instance, nanoparticles can be used to create environmentally friendly and biodegradable sporting equipment and apparel, minimising the impact of production and disposal on the environment.
Figure 8: Nanotech material for construction
Enhanced Building Materials: Nanotechnology can alter the characteristics of building supplies. To increase cement and concrete's strength, longevity, and resistance to environmental elements like corrosion, water ingress, and UV degradation, nanomaterials can be used, such as nano-silica or nano-titanium dioxide. Infrastructure that is made of these cutting-edge materials may be more resilient and sustainable.
Self-Cleaning and Anti-Microbial Surfaces: Surfaces and building exteriors can be coated with nanocoatings that are self-cleaning and antimicrobial. These coatings use nanomaterials to degrade organic contaminants and stop the growth of bacteria and mould, including titanium dioxide nanoparticles. This can result in settings that are cleaner and healthier, lower maintenance expenses, and better indoor air quality.
Energy Efficiency: Nanotechnology can help make buildings more energy-efficient. Thermally insulating nanocoatings can limit heat transmission through walls and roofs, which lowers the amount of energy needed for heating and cooling. By enhancing solar management and lowering heat loss, nanoparticles can also improve the performance of windows, resulting in more energy-efficient structures.
Smart Sensors and Structural Health Monitoring: Nanosensors are able to provide real-time structural performance and health monitoring for infrastructure and buildings. These sensors are able to recognise changes in temperature, strain, stress, and other characteristics, which can assist in spotting potential structural problems or risks. Nanosensors can provide useful information for early warning and preventative maintenance systems, assuring the durability and safety of buildings.
Air Purification: To enhance the quality of the air inside buildings, air filtration systems based on nanotechnology can be incorporated. Pollutants, allergens, and volatile organic compounds (VOCs) can all be effectively trapped and eliminated from the air by using nanomaterials like activated carbon nanotubes or nanofibers. This is especially important in cities with high levels of pollution.
Smart Coatings and Surfaces: Smart coatings and surfaces for buildings can be created using nanotech materials. Nanomaterials, for instance, can make it possible to create self-healing coatings that instantly fix tiny fractures and dings, increasing the life of construction materials. Additionally, for increased comfort and energy efficiency, smart surfaces with nanotechnology capabilities can react to environmental cues like temperature or humidity.
Water and Filtration Systems: Nanotechnology can help the construction industry's water treatment and filtration systems. Water sources can be made safe and clean by using nanomaterials like carbon nanotubes or nanofiltration membranes, which can remove pollutants, heavy metals, and microbes.
Government Initiatives in India Towards Nanotech:
The Indian government has launched several initiatives to promote and support nanotechnology research, development, and industrial applications. These initiatives aim to strengthen the nanotech ecosystem, foster collaboration between academia and industry, and drive innovation in various sectors. Here are some notable government initiatives in India towards nanotechnology:
Nanotechnology Mission: The Department of Science and Technology (DST) launched the Nanotechnology Mission in 2007. The mission aims to promote research and development in nanoscience and nanotechnology, establish infrastructure facilities, and support nanotech-based startups and industries.
Nano Mission Council: The Nano Mission Council oversees the implementation of the Nanotechnology Mission. It comprises experts from academia, industry, and government. The council provides guidance and support for nanotech research, development, and commercialization activities.
Nanomission Hubs: The Nanotechnology Mission has established several Nanomission Hubs across India. These hubs are research centers of excellence that focus on specific areas of nanotechnology, such as nanomaterials, nanoelectronics, nanomedicine, and nanomanufacturing. They provide state-of-the-art facilities, research grants, and collaborative opportunities.
Nano Science and Technology Initiative (NSTI): The Nano Science and Technology Initiative was launched by the DST to support fundamental research in nanoscience and nanotechnology. NSTI funds research projects promotes interdisciplinary collaborations, and supports the development of nanotech infrastructure in academic institutions.
Center for Nano Science and Engineering (CeNSE): CeNSE is a premier nanotech research facility established by the Indian Institute of Science (IISc) in Bangalore. It focuses on interdisciplinary research, nanofabrication, and providing facilities for nanotech startups and industries.
National Nanofabrication Center (NNFC): The National Nanofabrication Center, located in Kolkata, provides nanofabrication and characterization facilities to researchers, startups, and industries. It offers access to state-of-the-art equipment for the fabrication of nanostructures and devices.
Nano-Mission for Societal Applications: This initiative aims to leverage nanotechnology for societal applications such as healthcare, energy, water purification, agriculture, and the environment. It supports research and development of nanotech-based solutions addressing societal challenges and promotes their translation into commercial products.
Nanotechnology Research Centers: The government has established various nanotechnology research centers and facilities across the country, including the International Advanced Research Centre for Powder Metallurgy and New Materials (ARCI), the Jawaharlal Nehru Centre for Advanced Scientific Research (JNCASR), and the National Physical Laboratory (NPL), among others.
Funding Programs: The government provides funding support through various programs, such as the Nano Mission Grants, Nano Mission Nanoscale Research Grants, and Nanomission Utilization Program. These programs offer financial assistance for research projects, technology development, infrastructure creation, and human resource development.
These government initiatives play a crucial role in fostering research, development, and commercialization of nanotechnology in India. They provide funding, infrastructure, and support for collaboration, driving innovation and the application of nanotechnology across multiple sectors.
Foreign Nanotech Startups in India:
Several foreign nanotech startups have successfully entered the Indian market and established a strong presence. Here are a few examples:
QuantuMDx: QuantuMDx is a UK-based nanotech startup that focuses on molecular diagnostics and healthcare solutions. They have successfully entered the Indian market with their portable nanotech-based diagnostic devices. These devices enable rapid and accurate diagnosis of diseases, including infectious diseases and cancer, offering significant benefits in resource-constrained settings.
Nanoscribe: Nanoscribe, a German nanotechnology startup, has made a successful market entry in India. They specialize in 3D micro and nano printing technologies. Nanoscribe's high-resolution 3D printers have applications in various fields, including microelectronics, photonics, and bioengineering. Their technology has gained traction in the Indian research and manufacturing sectors.
Grolltex: Grolltex, a US-based nanotech startup, has established a presence in the Indian market with its advanced graphene-based materials and technologies. They offer graphene films and other graphene-based products for diverse applications, including electronics, energy storage, and sensors. Grolltex's innovative solutions have attracted the attention of Indian industries and research institutions.
Neuracle Lifesciences: Neuracle Lifesciences, a Singapore-based nanotech startup, has successfully entered the Indian market with its nanotechnology-enabled neurodiagnostic devices. They offer portable and cost-effective brain monitoring devices that aid in the diagnosis and monitoring of neurological disorders. Neuracle's solutions have gained acceptance among healthcare providers and specialists in India.
OCSiAl: OCSiAl, a global nanotechnology company based in Luxembourg, has made a significant market entry in India. They specialize in the production and distribution of single-walled carbon nanotubes (SWCNTs). OCSiAl's SWCNTs find applications in various industries, including electronics, automotive, and energy storage. Their advanced nanomaterials have been adopted by Indian manufacturers and researchers.
These are just a few examples of foreign nanotech companies and startups that have achieved successful market entry in India. Their success can be attributed to factors such as strategic partnerships with Indian organizations, localized product offerings, understanding of the Indian market dynamics, and alignment with India's technological goals.
Conclusion:
The Indian market provides exciting potential for foreign nanotech startups in the future. Foreign nanotech businesses can prosper in India thanks to the country's expanding economy, rising technological awareness, and supporting government policies. These startups can contribute their knowledge and creative nanotech solutions to meet India's changing demands with a strong focus on industries including automotive, aerospace, energy, construction, sports goods, and healthcare. For market access and successful commercialization, partnerships with local government agencies, research organisations, and industry actors are essential. Foreign nanotech businesses may develop a significant footprint and help India's economy thrive by utilising their technological advances and working with Indian stakeholders to drive innovation and sustainability in a variety of areas.
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Graphene Nanocomposites Market Size, Share, Growth Opportunity and Trends by Growing CAGR Till 2026
The global Graphene Nanocomposites Market report offers a comprehensive assessment of the market for the forecast years. The report contains several segments and an analysis of the market trends and growth factors that are playing a vital role in the market. These factors encompass the drivers, restraints, and opportunities. This globe industry offers an outlook on the strategic development of the market in terms of revenue profits over the forecast period 2021-2026.
The key market players for the global Graphene Nanocomposites market are listed below:
Angstron Materials
UNIPL
ACS Material
Graphenea
BGT Materials
Garmor
E WAY Technology
The Sixth Element Materials
Cheap Tubes
Allightec
Graphene Oxide Powder
LeaderNano
Graphene Oxide Solution
Nanoinnova
Others
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The Global Graphene Nanocomposites Market Report is equipped with market data from 2016 to 2026. The report gives a market overview covering key drivers and risk factors. The report is bifurcated by top global manufactures mentioning sales, revenue, and prices as applicable. It also evaluates the competitive scenario of the leading players. The report expands to cover regional market data along with type and application. The report forecasts sales and revenue from 2021 to 2026. The detailed sales channel is also covered in the study.
COVID-19 Impact Analysis on Graphene Nanocomposites Market
The global pandemic COVID-19 has affected the Graphene Nanocomposites market directly or indirectly. This study covers a separate section giving an explicitly clear understanding of the aftereffects of this pandemic. The detailed study highlights the probable outcomes of this global crisis on the Graphene Nanocomposites industry. The impact study on production, supply-demand, and sales provides a holistic approach to the future.
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To better understand the market scenario, the Graphene Nanocomposites market is segmented as below:
By Types:
Graphene Oxide (GO)
Graphene Nano Platelets (GNP)
Graphene Polymer
By Applications:
Packaging
Medical
Building & Construction
Electronics & Electrical
Automotive
By Regions:
North America (U.S., Canada, Mexico)
Europe (U.K., France, Germany, Spain, Italy, Central & Eastern Europe, CIS)
Asia Pacific (China, Japan, South Korea, ASEAN, India, Rest of Asia Pacific)
Latin America (Brazil, Rest of L.A.)
The Middle East and Africa (Turkey, GCC, Rest of Middle East)
The content of the study subjects includes a total of 14 chapters:
Chapter 1: To describe Graphene Nanocomposites product scope, market overview, market opportunities, market driving force, and market risks. Chapter 2: To profile the top manufacturers of Graphene Nanocomposites, with price, sales, revenue, and global market share of Graphene Nanocomposites in 2018 and 2019. Chapter 3: The Graphene Nanocomposites competitive situation, sales, revenue, and global market share of top manufacturers are analyzed emphatically by landscape contrast. Chapter 4: The Graphene Nanocomposites breakdown data are shown at the regional level, to show the sales, revenue, and growth by region, from 2015 to 2020. Chapter 5 and 6: To segment the sales by type and application, with sales market share and growth rate by type, application, from 2015 to 2020. Chapter 7, 8, 9, 10 & 11: To break the sales data at the country level, with sales, revenue, and market share for key countries in the world, from 2016 to 2021 and Graphene Nanocomposites market forecast, by regions, type, and application, with sales and revenue, from 2021 to 2026. Chapter 12, 13 & 14: To describe Graphene Nanocomposites sales channel, distributors, customers, research findings and conclusion, appendix, and data source.
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Nanocomposites Market Pegged for Robust Expansion by 2028
Stratview Research has published a new report on the Nanocomposites Market after a thorough analysis of the market. The key sources of information gathered for the report include various industry experts, suppliers, manufacturers, associations along with business distributions. The research report determines unique benefits of the various market size, share and the patent industry.
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The objective of the Nanocomposites Market report is to offer updated information such as the market share, size, trends, emerging markets, earnings, forecasts, and data on leading industry players. This study includes significant and vital information necessary for strategic decision making and have a competitive edge.
In view with the current pandemic analysts at Stratview Research has thoroughly analyzed and presented the following parameters under the detailed Covid – 19 impact analysis in the Nanocomposites Market.
Market Insights – The Nanocomposites Marketis projected to grow from USD 6.36 billion in 2022 to USD 8.69 billion by 2028 at a CAGR of over 5.3% during the forecast period.
Few key players operating in the Nanocomposites Market are-
Nanocor Inc.
E. I. Du Pont De Nemours
Zyvex Technologies Inc.
Arkema Inc.
Showa Denko K.K.
Powdermet Inc.
RTP Company
Nanophase Technologies Corporation
Unidym Inc.
Nanocyl S.A.
Growth drivers and Market Value:
This report, from Stratview Research, studies the Nanocomposites Market value and growth drivers over the trend period of 2022-27. According to the report -
Nanocomposites market is likely to witness an impressive CAGR of 15.7% during the forecast period. The prime factor contributing to the demand for nanocomposites is its growing adoption in automotive, packaging, defense, and aerospace industries/applications.
Based on Material Type:
Based on the material type, the market is segmented as carbon nanotubes, metal oxide, nanofiber, nanoclay, graphene, and others. The nanoclay segment held the largest share of the market in 2021, and is expected to remain dominant during the forecast period. The significant share of the nanoclay segment is attributed to the huge demand from packaging and automotive applications.
Based on Region:
In terms of regions, Asia-Pacific is projected to be the largest and fastest-growing market. The Asia-Pacific’s market is expected to grow with a lucrative CAGR due to the presence of a large number of nanocomposite manufacturers. High adoption of advanced technologies coupled with high demand from the automotive, electronics, and semiconductor applications in China is expected to boost the nanocomposites market in Asia Pacific.
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Critical Questions Answered in the Report
What are the key trends in the global Nanocomposites Market?
How the Nanocomposites Market (and its various sub-segments) has grown in the last five years?
What would be the growth driver and growth rate in next five years?
What is the impact of COVID-19 on the Nanocomposites Market?
What are the key strategies adopted by the major vendors to lead in the Nanocomposites Market?
What is the market share of the key players?
Target Audience
The following is a list of the customers that the Nanocomposites Market aims to convert the most:
Manufacturing Organizations
Distributors & Suppliers
Potential Investors
Custom Research: Stratview research offers custom research services across sectors. In case of any custom research requirement related to market assessment, competitive benchmarking, sourcing and procurement, target screening, and others, or to cover analysis on any particular geography or segment, please send your inquiry at [email protected] or +1-313-307-4176.
What we do –Stratview Research is a growing market research firm. Experts here illustrate innovative, descriptive, and comprehensive insights through market research to satisfy your individual and organizational objectives. We assist the users to make well-informed, profound and favourable decisions to comprehend the advantages of forthcoming trends, developments, assessments, and opportunities through our precise understanding of the market.
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India Wastewater Treatment Plants Market Insight, Outlook, 2022-2028
A recent study conducted by the strategic consulting and market research firm BlueWeave Consulting revealed that the India wastewater treatment plants market was worth USD 2.6 billion in the year 2020. According to the study, the market is estimated to grow at a CAGR of 10.8%, earning revenue of around USD 5.3 billion by the end of 2027. Growing environmental compliances, water pollution, scarcity of water, and the demand for wastewater services from different industries are driving the growth of this market. The Zero Liquid Discharge Regulation requires industrial facilities to stop dumping wastewater into rivers, lakes, ponds, and the sea by 2025. According to a report released by the Indian government, more than 70% of wastewater from industries, households, and other sources is discharged untreated into water bodies, and only 30% of wastewater generated in India's metropolises is treated. A massive gap remains between the need and the availability of wastewater treatment facilities, creating tremendous opportunities for new and existing market players.
Research & Development Activities Surrounding Wastewater Treatment Powering The India Wastewater Treatment Plants Market
With the increasing water scarcity levels and growth in the country’s population and industrial needs, India is extensively investing in developing cost-effective and environmentally-friendly water treatment methods. As an example, in a study conducted by researchers from India and South Korea, a nano-filter was made by using a graphene oxide/manganese dioxide nanocomposite, which according to the researchers can remove up to 100% of harmful compounds from wastewater. The work of such researchers contributes to the growth of the waste water treatment plants market in India.
The MBBR Process is Driving India’s Wastewater Treatment Plants Market
Based on process, the India wastewater treatment plants market is segmented into moving bed biological reactor (MBBR), and sequencing batch reactor (SBR). The moving bed biological reactor (MBBR) process accounts for the largest share in the India wastewater treatment plants market. This process does not require much physical space and can easily be managed by an unskilled workforce as well. Therefore, industries with limited space and workforce often opt for the MBBR process for wastewater treatment, which is driving its market growth. The segment is expected to retain its dominance throughout the forecast period.
India Wastewater Treatment Plants Market - By End-User
Based on end-users, the India wastewater treatment plants market is segmented into pharmaceuticals, refineries, power & energy, chemicals, paper & pulp, sugar, textile, steel & iron, and others. Among these, the power & energy sector holds the largest market share. In India, thermal power plants consume the most wastewater, since most of this water is used for cooling processes. Furthermore, the expanding power sector as a result of the growing power demand in the country is expected to exacerbate the wastewater problem in this sector. Similarly, the textile industry uses a lot of water for coloring and finishing, which generates a lot of wastewater, which requires wastewater treatment plants.
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West India Driving the India Wastewater Treatment Plants Market
Geographically, the India wastewater treatment plants market is segmented into North India, South India, East India, and West India. The Western region of India accounts for the largest share in the India wastewater treatment plants market. However, the Southern region of the country is anticipated to witness substantial growth during the forecast period. Water scarcity problems and dwindling groundwater levels in major cities in this region are driving the need for new wastewater treatment plants to manage the population's water requirements.
Impact of COVID-19 on India Wastewater Treatment Plants Market
India wastewater treatment plants market were initially halted by the sudden outbreak of the COVID-19 pandemic. Since the government imposed a lockdown and enforced social distancing norms to curb the spread of the disease, there was a shortage of employees at wastewater treatment plants. However, the COVID-19 also sparked the discussion surrounding the adoption of sustainability and environment protection, along with economic development. This is anticipated to boost the significance and establishment of wastewater treatment plants in India, driving the overall market growth.
Competitive Landscape
The leading players in the India wastewater treatment plants market are SUEZ Water Technologies & Solutions, Thermax Ltd., Doshion Veolia Water Solutions Pvt Ltd., VA Tech Wabag Ltd., Ion Exchange India Ltd., Larsen & Toubro Limited, Ecolab, Triveni Engineering & Industries Ltd., Paramount Limited, Toshiba Water Solutions Private Limited, and other prominent players.
Large players dominate the market, offering effective wastewater treatment technologies and methods. The companies spend a significant amount of money on research and development activities to strengthen their market position. They also continuously upgrade their product line to increase their product penetration. Additionally, competitive strategies like partnerships, mergers, acquisitions, joint ventures, etc., are common in this market.
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CSP Market Research has come up with new study on Global Graphene nanocomposites Sales Market segmentation by Product Type, by Application, by geography (APAC, North America, Europe, South America, and MEA) and forthcoming Graphene nanocomposites Sales Market market drivers that the Top Key players are capitalizing on to sustain profitable growth. Moreover, read about the latest key findings on the post-COVID-19 impact on the Graphene nanocomposites Sales Market out of this report.
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Nano-metal Oxides Market Size Forecast to Reach $11.7 Billion by 2026
Nano-metal oxides market size is forecast to reach $11.7 billion by 2026, after growing at a CAGR of 9.2% during 2021-2026 forecast period, owing to the increasing demand for nano-metal oxides such as titanium dioxide, graphene, and silicon dioxide from various end-use industries including electronics, medical, chemical, and cosmetics. Due to its exceptional characteristics, such as flame retardancy, chemical resistance, surface appearance, optical clarity, and dimensional stability, the market for nano-metal oxides is seeing an increase in demand. The rapid growth of the electrical & electronics industry has increased the demand for nanomaterial metal oxides; thereby, fueling the market growth. Furthermore, the flourishing medical & healthcare industry is also expected to drive the nano-metal oxides industry substantially during the forecast period.
COVID-19 Impact Global demand for successful diagnosis and treatment as well as prevention of the spread of infection has been fueled by the recent emerging COVID-19 epidemic. The alternative to reducing COVID-19 spread is largely fulfilled by nano-metal oxides such as titanium dioxide and silicon dioxide, especially in sensitive areas, such as healthcare facilities and public places. Nanotechnology-based products, irrespective of their drug-resistant profile, biological structure, or physiology, are effective at inhibiting various pathogens, like viruses. Antimicrobial nano-metal oxides also decrease the risk of secondary microbial infections in patients with COVID-19 by inhibiting bacteria and fungi that may contaminate healthcare facilities. Finally, cost-effective, easy-to-synthesize antiviral nanomaterials are reducing the burden of COVID-19 in difficult environments, which is supporting the market growth.
Nano-Metal Oxides Market Segment Analysis – By Product Type
The silica (SiO2) segment held the largest share in the nano-metal oxides market in 2020 and is expected to growth at a CAGR of 10.3% during 2021-2026. The extensive usage of SiO2 in the manufacture of paints, plastics, batteries, cosmetics, glass, and rubber is expected to augment growth. Silicon dioxide is also used as a drug carrier and as an integral part of electronic devices in biomedical applications. In paints and coatings, silica nanoparticles are used to enhance the degree of finish, improve scrub and stain resistance, shorten the drying time, and provide protection against UV rays. They are also used in plastics and can substantially increase the resistance of plastics to durability, strength, wear, and aging. In the optical, building, and glass industries, silicon dioxide is an integral factor. For high-temperature resilient equipment, quartz glasses are used to make lenses and other optical constituents. All these extensive applications of silica-based nano-metal oxide will drive the nano-metal oxides market during the forecast period.
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Nano-Metal Oxides Market Segment Analysis – By End-Use Industry
The electrical and electronics segment held the largest share in the nano-metal oxides market in 2020 and is growing at a CAGR of 12.8% during 2021-2026, due to its various characteristics, such as electrical and thermal conductivity, magnetic properties, and mechanical strength, its extensive use in the electronic industry as pressure sensor materials. These nanocomposites of metal oxides are used in the manufacture of piezoelectric systems, fuel cells, and coatings. NMO's are used as a catalyst for corrosion prevention and are very rampant. In electronic devices, heat dissipation requires high thermal conductivity interface materials, so nano-metal oxides have been developed to improve thermal, electrical, and mechanical properties. The nano-metal oxides increase the electrical conductivity of ceramics, increase the electrical resistance of nano-metals, making it atypical to be commonly used in electronic materials such as sensor manufacturing, electromagnetic interference shielding, transistors, optoelectronics, hard drives, flash memory chips, batteries, condensers and memory chips, which is driving nano-metal oxides market growth.
Nano-Metal Oxides Market Segment Analysis – By Geography
North America region held the largest share in the nano-metal oxides market in 2020 up to 34%, owing to support from the national governments and investment in the respective domestic markets in the region. The rising application of nano-metal oxides in various end-use industries such as electronics, automotive, and pharmaceuticals in the U.S., Canada, and Mexico is the main factor behind the dominance of the North American nanomaterials market. According to the United States International Trade Commission, the overall exports of electronic goods increased by $7.9 billion (3 percent) to $268 billion in 2017 in the United States. Since the establishment of the NNI in 2001, the National Nanotechnology Institute, U.S. Government Research & Development programs have spent nearly $29 billion. In 2018, the Silicon Valley startup took $60 million in funding from DigiLens to build nanomaterials and boost heads-up displays (HUDs). In 2017, the National Nanotechnology Institute (NNI) was allocated funding for nanotechnology research and development by federal agencies such as the National Institute of Standards and Technology (NIST), National Institutes of Health (NIH), and the National Science Foundation (NSF). All these initiatives are growing the nano-metal oxides market in the region during the forecast period.
Nano-Metal Oxides Market Drivers
Increasing Personal Care & Cosmetic Industries
The personal care and cosmetic sector are booming in varied regions due to the increasing demand for cosmetics from consumers. In 2017, France ($324 million) was the largest exporter to Korea, followed by the U.S. ($291 million) and Japan ($182 million), according to the International Trade Administration (ITA). And from USD 22,236 billion in 2018 to USD 22,680 billion in 2019, France's overall cosmetic production grew. Also, South Korea is the 8th largest cosmetics market in the world, representing nearly 3.0% of the global market. In 2017, South Korea’s market size was approximately $8.8 billion, the total local production increased by 3.6% from the previous year and the market is growing by an annual growth rate of 4.7% for the last 5 years (2013-2017). The products such as sunscreen, moisturizers, and makeup essentials use titanium dioxide, aluminum, and zinc oxide. Nano-metal oxide nanostructures enhance efficiency, texture, transparency, and protect active ingredients present in cosmetics, owing to which it is largely used in cosmetic products such as lotion, sunscreen, and more. Thus, the increasing personal care and cosmetic sector act as a driver for the nano-metal oxides market.
Emerging Applications in Medical & Healthcare Sectors
Nanostructures of metal oxides such as titanium dioxide and silicon dioxide are commonly used in medicine and pharmaceuticals due to their mechanical, optical, electrical, and chemical activities for the sensitive identification of main biological molecules, more reliable and safer imaging of diseased tissues, and novel types of therapeutics. The number of therapeutic and diagnostic agents based on nanomaterials has been developed for the treatment of cancer, diabetes, pain, asthma, allergy, and infections, due to which the demand for nanomaterials is growing.
A system for delivering cardiac stem cells to damaged heart tissue is being developed by researchers at North Carolina State University to increase the number of stem cells delivered to the injured tissue. To detect cancer cells in the bloodstream, researchers at the Worcester Polytechnic Institute have developed antibodies attached to carbon nanotubes in chips. The researchers believe that this could provide early detection in the bloodstream of cancer cells. Thus, increasing application of nano-metal oxides in the field of medical and healthcare is anticipated to eventually drive the market growth.
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Nano-Metal Oxides Market Challenges
Health Hazards From Nano-Metal oxides
The nanomaterials based sunscreen contains titania oxide and zinc oxide as UV light absorbing components, which are transparent due to their small size as it provides effective protection. Full UVA shielding is provided by organic active agents such as avobenzone but can cause skin irritation. There is growing concern about the use of nano-metal oxides, as they release free radicals upon absorption of UV radiation, which can damage DNA and can prove to be carcinogenic. Therefore, nanomaterial manufacturers typically provide coating particles that allow free radicals to recombine before entering the skin. Recent studies on nanomaterials, however, suggest that they may penetrate much deeper than micro-particles when applied to the skin, which may complicate the use of nano-metal oxides in cosmetics and may serve as a constraint on the demand for nano-metal oxides.
Nano-Metal Oxides Market Landscape
Technology launches, acquisitions, and R&D activities are key strategies adopted by players in the nano-metal oxides market. Major players in the nano-metal oxides market are Nanoshel LLC, Nanophase Technologies Corporation, American Elements, Advanced Nano Products Co. Ltd., Diamon-Fusion International Inc., Sigma-Aldrich Corporation, US Research Nanomaterials Inc., EPRUI Nanoparticles & Microsphere, SkySpring Nanomaterials Inc., and Baikowski SAS.
Acquisitions/Technology Launches
In February 2021, Gnanomat launched its third graphene-based nanocomposite – “Graphene – Silver nanocomposite”, made of pristine graphene coated with silver nanoparticles. And the product can be used in applications such as inks on textiles for highly conductive wearable electronics, electrochemical sensors, catalyst, antibacterial activity and detection of heavy metal ions.
In February 2019, Grafoid Inc. launched an innovative suite of Oxidized Graphene products – GNOX™. The GNOX™ product line represents highly customizable graphene products for an industry currently valued at $50-100M with a compound yearly growth of 40%.
Key Takeaways
North America dominates the nano-metal oxides market, because of its growing application in various industries such as electronics, medicine, automobile, and cosmetics, due to its extensive properties such as heat resistance, insulation, corrosion resistance, biocompatibility, anti-reflection, and electro chromaticity.
Electronic products are widely using nano-metal oxides for manufacturing chips, batteries, transistors, and more. According to United States International Trade Commission, the total exports of electronic products grew by $7.9 billion to $268 billion in 2017 in the U.S. Thus, it is anticipated that the increasing demand for electronic products will further drive the market growth.
Due to the COVID-19 pandemic, most of the countries have gone under lockdown, due to which operations of various industries such as electronics and automotive have been negatively affected, which is hampering the nano-metal oxides market growth.
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Nanocomposites Market Growth Analysis, Size Expansion, Industry Share and Business Opportunities to 2027
Nanocomposites are substances that possess properties that cater to applications across diverse industry verticals. The massive investments in the research and development of efficient products will emerge in favor of growth of the overall market in the coming years. The increasing applications of the product have attracted huge investments from large scale companies across the world. The properties of nanocomposites such as good electric conductivity, high thermal stability, and excellent mechanical strength have fuelled the demand for the product across the world. The increasing uses of nanocomposites in the biomedical industry will bode well for the growth of the overall nanocomposites market in the foreseeable future.
The global nanocomposites market size is projected to reach USD 14.34 billion by the end of 2027. The increasing applications of the product across diverse industry verticals will emerge in favor of market growth. The presence of several large-scale companies will contribute to the growth of the market in the coming years. According to a report published by Fortune Business Insights, titled “Nanocomposites Market Size, Share & Industry Analysis, By Type (Polymer, Metal, Ceramic, Others), By Product (Carbon Nanotubes, Nanoclay, Graphene, Nanofiber, Others), By Application (Packaging, Electrical & Electronics, Automotive, Aerospace & Defense, Others), and Geography Forecast, 2020-2027” the market was worth USD 4.32 billion and will exhibit a CAGR of 16.3% during the forecast period, 2020-2027.
List of the Key Companies Profiled:
Arkema S.A. (France)
Evonik Industries AG (Germany)
Showa Denko K.K. (Japan)
Cabot Corporation (U.S.)
Zyvex Technologies Inc. (U.S.)
Nanocyl SA (Belgium)
RTP Company (U.S.)
Nanophase Technologies Corporation (U.S.)
Nanocor Inc. (U.S.)
DuPont (U.S.)
Other Key Players
Covid-19 Pandemic to Create Several Growth Opportunities for Nanocomposite Businesses
The recent coronavirus outbreak has had a massive impact on several economies across the globe. Due to the rapid spread of the disease, several countries are looking to implement strict measures with a view to controlling the spread of the disease. The efforts taken to curb the spread of the disease have limited the growth of the businesses across the world. Despite the barriers set by the Covid-19 pandemic, the nanocomposites market will derive significant growth from this due to the rise in demand for packaging material across the world. Due to the increase in deliveries across food supplies and other industries will emerge in favor of market growth. Besides the food industry, the electronics industry will also witness significant growth due to the recent pandemic.
Browse In-depth Summary of This Research Insights@ https://www.fortunebusinessinsights.com/nanocomposites-market-104041
Increasing Number of Company Collaborations will Emerge in Favor of Market Growth
The report encompasses several factors that have contributed to the growth of the overall market in recent years. Accounting to the increasing demand for the product, there is a healthy market competition across the world. The strong market competition has encouraged companies to adopt newer strategies that have helped them establish a stronghold in the market. In July 2020, PPK announced that it has partnered with Geelong’s Deakin University for the development of a new product integrated with nanocomposites. The companies will develop boron nitride nanotubes (BNNT) for new dental nanocomposites. Increasing number of such company collaborations will have a huge impact on the growth of the overall market in the forthcoming years.
Asia Pacific to Emerge Dominant; Presence of Several Large Scale Companies will Emerge in Favor of Market Growth
The report analyzes the ongoing market trends across North America, Asia Pacific, Europe, the Middle East & Africa, and Latin America. Among all regions, the market in Asia Pacific is projected to emerge dominant in the coming years. The increasing use of nanocomposites by large scale companies in the Asia Pacific will fuel the demand for the product across the world. The increasing investments in the research and development of efficient products will also emerge in favor of market growth. Additionally, the increasing use of nanocomposites in the electronic industry will have a huge impact on the growth of the regional market. As of 2019, the market in Asia Pacific was worth USD 1.65 billion and this value is projected to rise at considerable pace in the coming years.
Industry Developments:
July 2019: Researchers from the University of California, Santa Barbara and the University of Hawaii have synthesized nanoparticles that can be used for 3D printing.
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Carbon Nanotubes (CNTs) Market Growth, Statistics, Size 2021, Emerging Trends, Industry Share, Future Demands, Potential, Product and Service Analysis, Regional Overview and SWOT Analysis till 2027
Market Players
Market Research Future (MRFR) recognizes the following companies as the key players in the Global Carbon Nanotubes Market: Arry International Group Limited (China), Showa Denko K.K. (Japan), Nanocyl SA (Belgium), Arkema SA (France), Carbon Solutions, Inc (US), Thomas Swan & Co. Ltd (UK), NanoLab Inc (US), Nanoshel LLC (US), KUMHO PETROCHEMICAL (South Korea), Grafen Inc (Turkey), and LG Chem (South Korea).
Market Highlights
The Global Carbon Nanotubes (CNTs) Market was valued at USD 1,659.8 million in 2018 and is projected to register a CAGR of 20.36% to reach USD 6,026.4 Million by the end of 2025. Nanotechnology is the emerging field of science dealing with nanoparticles (1 nm = 10−9m). Carbon nanotubes (CNTs) are nanoparticles with a size range of 1–150 nm and they offer unique properties that are valuable in nanotechnology and other fields of material science. These tubes are made of layer/layers of graphene which are rolled to form a seamless cylinder. On the basis of number of tubes present, the CNTs are classified as single-walled carbon nanotubes (SWCNTs) and multi-walled carbon nanotubes (MWCNTs). Most of the SWCNTs have a diameter close to one micron and made by wrapping a one-atom-thick layer of graphene into seamless cylinder. On the other hand, MWCNTs consist of multiple rolled layers (concentric tubes) of graphene.
Regional Analysis
Geographically, the global carbon nanotubes market has been divided into Asia-Pacific, Europe, North America, Latin America, and the Middle East & Africa. As per MRFR analysis, the Asia Pacific market was the dominant regional market, accounting for the largest share of around 55% by volume in 2018 and is expected to register highest CAGR during the forecast period. Asia-Pacific is followed by North America, which accounted for the second-largest share of the global carbon nanotubes market in 2018.
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Segmental Analysis
According to MRFR analysis, the global carbon nanotubes (CNTs) market has been segmented based on type, method, end-use industry, and region.
Based on type, the global carbon nanotubes (CNTs) market has been bifurcated into single-walled carbon nanotubes (SWCNTs) and multi-walled carbon nanotubes (MWCNTs). Among these, the MWCNTs segment dominated the global carbon nanotubes market by volume in 2018 due to its low cost, which leads to its larger preference by consumers. The segment is expected to register a CAGR of over 22% during the forecast period.
By method, the global carbon nanotubes (CNTs) market has been classified into chemical vapor deposition, high-pressure carbon monoxide disproportionation, arc discharge, laser ablation, and others. Among these, the chemical vapor deposition was the predominant market segment in 2018 with over 97% market share by volume due to its relatively high yield and low cost.
On the basis of end-use industry, the global carbon nanotubes (CNTs) market has been segmented into aerospace & defense, electrical & electronics, automotive, energy, sports, and others. Among them, the electricals & electronics segment held the largest market share of around 42% by volume in 2018 due to the increasing application of carbon nanotubes (CNTs) in the industry on account of its outstanding properties.
Key Findings of the Study:
The global carbon nanotubes market is projected to register a CAGR of 20.36% to reach USD 6,026.4 million by the end of 2025.
Based on type, by volume, the MWCNTs segment held the largest market share in 2018 and is expected to grow at a CAGR of over 22% during the forecast period.
Based on method, the chemical vapor deposition segment held the largest market share by value and volume in 2018. The segment was sized at 2,592.71tons in 2018.
On the basis of end-use industry, the electricals & electronics segment was sized at 701,974.1 tons in 2018.
Asia-Pacific accounted for the largest market share of 57.3% by volume in 2018 due to the rapid industrial growth in the region. The region is expected to grow at value CAGR of over 22% during the forecast period.
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Read More Related Article:
https://www.marketresearchfuture.com/reports/composites-market-5399
https://www.marketresearchfuture.com/reports/nanocomposites-market-8280
https://www.marketresearchfuture.com/reports/lecithin-market-5404
#Carbon Nanotubes (CNTs) Market#Carbon Nanotubes (CNTs) Market share#Carbon Nanotubes (CNTs) Markettrends#Carbon Nanotubes (CNTs) Market forecast#type\Carbon Nanotubes (CNTs) Market
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Polymer Nanocomposites Market is projected to grow at the highest CAGR from 2020 to 2027 | Reports and Data
Market Size – USD 4.64 Billion in 2019, Market Growth - CAGR of 16.3%, Market Trends -Growing demand in the automobile industry.
The latest study by Reports and Data, called “Global Polymer Nanocomposites Market Forecast to 2027,” lists some of the primary growth potentials of the global Polymer Nanocomposites industry. The primary target of this report is to help industry stakeholders capitalize on its highly informative content to make improved business decisions. The insightful data provided by the report are gathered from several primary and secondary resources. Moreover, the report is intended to help readers gain actionable insights into the global Polymer Nanocomposites market and the prevailing growth opportunities and trends in particular.
The latest market intelligence report entails a holistic overview of the Polymer Nanocomposites market, providing the reader with essential conclusive data & information concerning market growth, evaluated on both regional and global levels. The competitive analysis of the report focuses on the leading market players and their lucrative business expansion initiatives. Hence, the sample copy of the ‘Global Polymer Nanocomposites Market’ research report includes a brief analysis of this ever-evolving business sector, encompassing the regional overview, competitive landscape, technological innovations, and future market developments.
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Furthermore, the report offers in-depth scrutiny of the key market elements, such as drivers, constraints, opportunities, limitations, threats, and micro and macro-economic factors. The exhaustive SWOT analysis, Porter’s Five Forces analysis, feasibility analysis, and investment return analysis have also been included in the report. Strategic recommendations for the new and established market players are intended to assist them in fortifying their financial positions in the Polymer Nanocomposites market.
COVID-19 Impact Assessment:
The latest report sums up the major changes in the global business sector that took place as a repercussion of the COVID-19 outbreak. Having impacted the global Polymer Nanocomposites market in an unfavorable manner, the pandemic has significantly disrupted the market dynamics and trends. The public health emergency adversely affected the global supply chains and resulted in acute volatility in product prices and demand. However, industry experts believe that the global Polymer Nanocomposites market will regain traction in the post-COVID scenario. The report also offers a broad assessment of the pandemic’s preliminary and future impacts on this lucrative market.
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Regional Landscape:
An essential component of the report is the detailed study of the geographical outlook of the global Polymer Nanocomposites market. The global Polymer Nanocomposites market is categorized into several key geographical regions, including North America, Asia Pacific, Europe, Latin America, and Middle East & Africa. In this section of the report, the authors have meticulously analyzed the regional market share, market size, revenue contribution, sales network, distribution channels, and numerous other aspects.
Competitive Outlook:
The leading contenders in the global Polymer Nanocomposites market are:
Arkema, RTP Company, Nanocyl SA, Unitika, Evonik, Minerals Technologies, Hybrid Plastics, Nylon Corporation of America, Ad-Nano Technologies, and 3M, among others.
Polymer Outlook (Revenue, USD Billion; 2017-2027)
Epoxy Resin
Polyamide
Polyethylene
Polypropylene
Others
Nanomaterial Outlook (Revenue, USD Billion; 2017-2027)
Carbon Nanotubes
Metal Oxide
Nanofiber
Nano clay
Graphene
Others
Application Outlook (Revenue, USD Billion; 2017-2027)
Automotive & Aerospace
Electrical & Electronics
Packaging
Biomedical
Paints & Coatings
Others
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Nanocomposites Market Expanding Worldwide by 2027; Fortune Business Insights
The global nanocomposites market size is projected to reach USD 14.34billion by the end of 2027. The increasing applications of the product across diverse industry verticals will emerge in favor of market growth. The presence of several large-scale companies will contribute to the growth of the market in the coming years. According to a report published by Fortune Business Insights, titled “Nanocomposites Market Size, Share & Industry Analysis, By Type (Polymer, Metal, Ceramic, Others), By Product (Carbon Nanotubes, Nanoclay, Graphene, Nanofiber, Others), By Application (Packaging, Electrical & Electronics, Automotive, Aerospace &Defense, Others), and Geography Forecast, 2020-2027” the market was worth USD 4.32 billion and will exhibit a CAGR of 16.3% during the forecast period, 2020-2027.
Nanocomposites are substances that possess properties that cater to applications across diverse industry verticals. The massive investments in the research and development of efficient products will emerge in favor of growth of the overall market in the coming years. The increasing applications of the product have attracted huge investments from large scale companies across the world.The properties of nanocomposites such as good electric conductivity, high thermal stability, and excellent mechanical strength have fuelled the demand for the product across the world. The increasing uses of nanocomposites in the biomedical industry will bode well for the growth of the overall nanocomposites market in the foreseeable future.
Covid-19 Pandemic to Create Several Growth Opportunities for Nanocomposite Businesses
The recent coronavirus outbreak has had a massive impact on several economies across the globe. Due to the rapid spread of the disease, several countries are looking to implement strict measures with a view to controlling the spread of the disease. The efforts taken to curb the spread of the disease have limited the growth of the businesses across the world. Despite the barriers set by the Covid-19 pandemic, the nanocomposites market will derive significant growth from this due to the rise in demand for packaging material across the world. Due to the increase in deliveries across food supplies and other industries will emerge in favor of market growth. Besides the food industry, the electronics industry will also witness significant growth due to the recent pandemic.
Increasing Number of Company Collaborations will Emerge in Favor of Market Growth
The report encompasses several factors that have contributed to the growth of the overall market in recent years. Accounting to the increasing demand for the product, there is a healthy market competition across the world. The strong market competition has encouraged companies to adopt newer strategies that have helped them establish a stronghold in the market. In July 2020, PPK announced that it has partnered with Geelong’s Deakin University for the development of a new product integrated with nanocomposites. The companies will developboron nitride nanotubes (BNNT) for new dental nanocomposites. Increasing number of such company collaborations will have a huge impact on the growth of the overall market in the forthcoming years.
Asia Pacific to Emerge Dominant;Presence of Several Large Scale Companies will Emerge in Favor of Market Growth
The report analyzes the ongoing market trends across North America, Asia Pacific, Europe, the Middle East & Africa, and Latin America. Among all regions, the market in Asia Pacific is projected to emerge dominant in the coming years. The increasing use of nanocomposites by large scale companies in the Asia Pacific will fuel the demand for the product across the world. The increasing investments in the research and development of efficient products will also emerge in favor of market growth. Additionally, the increasing use of nanocomposites in the electronic industry will have a huge impact on the growth of the regional market.As of 2019, the market in Asia Pacificwas worth USD 1.65 billion and this value is projected to rise at considerable pace in the coming years.
List of the Key Companies Profiled:
• Arkema S.A. (France)
• Evonik Industries AG (Germany)
• Showa Denko K.K. (Japan)
• Cabot Corporation (U.S.)
• Zyvex Technologies Inc. (U.S.)
• Nanocyl SA (Belgium)
• RTP Company (U.S.)
• Nanophase Technologies Corporation (U.S.)
• Nanocor Inc. (U.S.)
• DuPont (U.S.)
• Other Key Players
Information Source:
https://www.fortunebusinessinsights.com/nanocomposites-market-104041
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Global Advanced Polymer Nanocomposites Market 2028 – Competitive Analysis & COVID-19 Impact Analysis
The global Advanced polymer nanocomposites market are produced by using two key components which are matrix related to polymers as well as the reinforced fiber materials. Production of advanced polymer nanocomposite materials include a wide number of synthetic, man-made and artificial fibers including aramid and carbon as well as other glass and polymer based resins such as phenol, epoxy, poly acrylic and polyester. In addition to this, advanced polymer nanocomposite materials find a vast number of applications in various end use industries especially in the automotive, aerospace, aviation, marine and energy applications. Polymer composite materials are showing tremendous growth and are coming out as significantly lucrative substitutes of materials and metals such as aluminum, titanium and steel especially in aircraft components such as turbine blades and chemical reaction vessels since composite materials helps in yielding relatively more lighter weight of end products as well as offer relatively better resistance to other chemical reactions such as corrosion. Increase in demand for light weight vehicles as well as rising demand for relatively more larger aircrafts is one of the key factors projected to drive the overall demand for advanced polymer nano composites thus driving the global market during the forecast period. In addition to this, glass fiber materials and composites account for the highest share in the global advanced polymer nano composites market. Moreover, huge demands for commercial aircrafts along with increasing rise in cost prospects of aircraft fuel are some other major aspects projected to drive the global demand for advanced polymer nano composites over the next few years. Furthermore, rising demand for non-traditional sources of energy including wind energy and hydro energy are further projected to fuel the overall demand for glass fibers to a considerable rate during the forecast period. Get PDF sample report: https://www.envisageresearch.com/sample/EMR100254/
The global advanced polymer nano composites market can be categorized based on fiber type, product type, application, raw material and geography. By product type, the global advanced polymer nanocomposite market can be categorized into nanoclay, metal oxide, nanofiber, graphene, carbon nanotubes, others and recycled paper. Based on fiber type, the global advanced polymer nanocomposites market can be bifurcated into thermoplastics and thermosetting. Based on application, the global advanced polymer nanocomposites market can be categorized into aerospace, automotive, marine, defense, coatings, energy, electronics and semiconductor, sports, healthcare and others. Based on raw material, the global advanced polymer nanocomposites market can be divided into fibers and resins. Resins segment can be further subcategorized into polyester resin, epoxy resin, phenolic resin and others. Fibers segment can be further subcategorized into aramid, carbon others and glass. Based on geography the global advanced polymer Nano composites market can be segmented into Latin America, North America, Middle East & Africa, Europe and Asia Pacific.. The robust demand especially in the Asia Pacific region is expected to be one of the key driving factors for the overall growth of the global market .Furthermore, China is further projected to account for the highest share in the global market and is expected to maintain its lead in the overall demand during the forecast period. This can be attributed to rapid industrialization and rising urbanization during the past few years. The markets in various other developing economies such as Brazil, Indonesia, Russia, Argentina, New Zealand, India and Korea among others are also predictable to witness a rapid growth throughout the forecast period. In addition to this, increasing per capita disposable income and surge in the global economy is one of the key factor which is expected Key players operating in the global market are engaged on some of the major market strategies such as mergers, partnerships, collaborations and acquisitions in order to keep hold in the ever competitive global market. Furthermore, they are focusing on gaining hold on the local players to strengthen their goodwill as well as to enhance their market reach in the global market. Key players involved in the manufacture and supply of advanced polymer nanocomposites market include Du Pont De Nemours Company, Owens Corning, Toray Industries, Mitsubishi Rayon, Alcoa Inc., PPG Industries, Hexcel, Kemrock Industries and Exports, TPI Composites and Cytec Inc. among others. The global advanced polymer nano composites market can be segmented by: By product type: • Nanoclay, • Metal oxide • Nanofiber • Graphene • Carbon nanotubes • Recycled paper • Others By Fiber type: • Thermoplastics • Thermosetting By Application: • Aerospace • Automotive • Marine • Defense • Coatings • Energy • Electronics and semiconductor • Sports • Healthcare and others By Raw Material : • Fibers • Resins Resins : • Polyester resin • Epoxy resin • Phenolic resin • Others Fibers : • Aramid • Carbon • Glass • others By region : • Latin America • North America • Middle East & Africa • Europea • Asia Pacific Buy this Report: https://www.envisageresearch.com/buy/EMR100254/
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Biomass Pellets Market is expected to expand at a CAGR above 8% over the forecast period of 2019 to 2029- Future Market Insights
Future Market Insights’ new market research report titled, 'Biomass Pellets Market: Global Industry Analysis 2014–2018 and Opportunity Assessment 2019–2029', investigates the biomass pellets market, and provides critical insights for the forecast period 2019 to 2029. As per the findings of the report, the global biomass pellets market is projected to experience significant growth over the forecast period, because of multiple driving factors such as increasing utilization of biomass pellets in coal-fired boilers in industries, and also in commercial and domestic heating applications.
The global biomass pellets market was valued at around US$ 9 Bn in the year 2018, and is expected to expand at a CAGR above 8% over the forecast period of 2019-2029. Several government policies are being implemented across geographies that are favoring the utilization of efficient bio-fuels such as biomass pellets as a replacement for fossil-based fuels. This has significantly created demand for biomass pellets, and this demand is expected to grow at a very high rate over the forecast period.
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East Asia Projected for Significant Growth Opportunities
Over the past years, Europe has been one of the key prominent regions in terms of the production and consumption of biomass pellets. However, other regions such as East Asia have emerged as lucratively growing regions in the global biomass pellets market. This has resulted from the significant growth of the markets in East Asia countries such as China, South Korea, and Japan.
China is one of the prominent hubs of industries and that use coal-based boilers. This creates ample opportunities of demand for biomass pellets that can be used as a replacement or co-fired with coal in these industries.
Furthermore, the demand in South Korea and Japan for biomass pellets has witnessed a significant hike over the past years. As a consequence, East Asia, as a whole, projects significant growth opportunities for the global biomass pellets market over the forecast period.
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Sales of Wood Sawdust-Derived Biomass Pellets to Remain Prominent
The market has been segmented on the basis of different sources of biomass pellet production and on the basis of their multiple end uses, besides the seven prominent regions of the world.
On a global level, wood sawdust is the prominent source of biomass pellet production. The growth in the sales of biomass pellets from this segment is projected to be significant over the forecast period. However, other sources are expected to gain market share over the forecast period.
Industries with installed coal-based boilers consume a fair share of the global biomass pellets market volume. This consumption is expected to increase further over the forecast period.
Government policies regarding carbon emissions from industries are changing across geographies in order to achieve their goals and targets of sustainable development. They have become stricter towards the quantity of carbon emitted from industries. As a consequence, industrialists are bound to use biomass pellets in co-firing applications in order to reduce their carbon content and also the cost expenditure over fuels. As a consequence, prominent demand for biomass pellets is being witnessed from industries on a global level.
Preview Analysis Global Market Study on Biomass Pellets: Low-cost Sustainable Fuel Products Gaining Momentum in Industrial Sector: Global Industry Analysis 2014-2018 and Opportunity Assessment 2019 - 2029: https://www.futuremarketinsights.com/reports/biomass-pellets-market
Biomass Pellets Market: Vendor Insights
The report highlights some of the market players that are prominent and have established themselves as leaders in the global biomass pellets market. Some of the examples of the key players in this market are Drax Biomass Inc., Enviva Partners, LP, German Pellets GmbH, AS Graanul Inves, Pinnacle Renewable Energy Inc., and Abellon CleanEnergy Limited, among others. These players have a diverse set of biomass pellet offerings for industrial, commercial, as well as domestic applications. These players also participate actively in the trade of biomass pellets to reach international markets, and develop by acquiring a diverse clientele across geographies.
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Non PVC Plasticizers Market- Global Industry Analysis, Size, Share, Growth, Trends and Forecast 2018 - 2026
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Saudi Arabia Graphene Market Industry Size, Share, Trend Analysis 2021
A recent study conducted by the strategic consulting and market research firm, BlueWeave Consulting, revealed that the Saudi Arabia graphene market is estimated to grow at a CAGR of 18.0% during the forecast period. Due to the wide application of graphene in many different industries, the Saudi Arabia graphene market is growing at a rapid pace. Graphene is being widely used in the construction energy as well as the renewable energy sector in Saudi Arabia, which is positively affecting its market demand. This nanomaterial poses magnificent thermal and electrical conductivity, which is why its use in the energy sector is growing at a high rate, propelling the market growth. With its excellent properties and impressive growth potential, graphene is also attracting researchers in the country, which is anticipated to boost the market during the forecast period. Graphene's adverse effects on human and animal health can however negatively impact the growth of the Saudi Arabian graphene market.
Growing Demand for Nanocomposites is Boosting The Demand For Graphene In Saudi Arabia
Saudi Arabia is a country with huge growth potential but the lack of resources gets into its way of development. Therefore, the demand for artificial materials and elements that pose extraordinary properties is growing in this country. Nanomaterials such as graphene are emerging as potential materials as a result. Nanomaterials have replaced steel and aluminum and helped preserve a lot of natural resources. Graphene-based composites synthesized with nanoparticulate matter can enhance physical properties and can transform various products, according to Edreese Alsharaeh, professor of Chemistry at Alfaisal University in Saudi Arabia. These features are anticipated to emerge as a major driving factor for the Saudi Arabia graphene market growth.
Wide Application of Graphene in Various Industries Play Crucial Role in Driving Market Growth
Graphene is a remarkable material that can be used in a wide variety of applications. The material is widely used in various industries such as construction, construction, energy, electronics, etc., due to its wonderful properties. Graphene's wide application is an important factor propelling the graphene market in Saudi Arabia. For instance, it can be used in the water purification process. Furthermore, graphene sheets with tiny holes are being investigated as a water filtering method, since they permit water molecules to pass while blocking contaminants.
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Saudi Arabia Graphene Market - By Application
Based on applications, the Saudi Arabia graphene market is segmented into optical electronics, biological engineering, composite materials, photovoltaic cells, energy storage, and others. The energy storage segment holds a substantial share in the Saudi Arabia graphene market. Saudi Arabia is investing heavily in the renewable energy sector and plans to generate 50% of its energy from renewable sources by 2030. The high electronic conductivity, transparency, and flexibility of graphene solar batteries are expected to drive its demand in Saudi Arabia.
Impact of COVID-19 on Saudi Arabia Graphene Market
In turn, this caused the major end-user industries of graphene, such as construction and renewable energy sectors, to halt. As a result, the demand for graphene witnessed a sharp decline across the country, incurring huge losses to the market players. In spite of this, the market is expected to flourish in the post-COVID-19 era as the country lifts lockdown restrictions and distribution channels resume. Additionally, the government is expected to focus on getting the economy back on track, which is anticipated to fuel the graphene demand in the country.
Saudi Arabia Graphene Market: Competitive Landscape
The leading players in the Saudi Arabia graphene market are Graphene Crystal, MSE Supplies Ltd., Graphene Nanomaterials, Directa Plus, Graphene Ventures, Techinstro Industries, Tirupati Speciality Graphite Ltd., and other prominent players.
There are only a few market players in this relatively new market. Therefore, there are great opportunities for new entrants. The established companies focus on offering their products in various industries to expand their revenue. Furthermore, they invest heavily in R&D activities in partnership with research institutes to expand the scope of graphene. The adoption of competitive strategies, such as partnerships, mergers, acquisitions, joint ventures, etc., is also prevalent in this market.
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Metal Matrix Nanocomposites Market Future Growth with Technology and Outlook 2020 to 2027
The current report on the Metal Matrix Nanocomposites Market provides a comprehensive assessment of the business vertical and offers a comprehensive overview of the industry along with its key segments. The study includes an accurate estimate of the current industry scenario along with the market size, market volume, and revenue garnered by the industry. The report delivers radical data about the competitive landscape of the Metal Matrix Nanocomposites industry and a thorough bifurcation of the regions where the Metal Matrix Nanocomposites market has established a significant footing. The report further estimates the market scenario in context with the COVID-19 pandemic. The report analyses the current market scenario along with the effects of the COVID-19 on the present and future scenario. The report also focuses on the key changes, progress, or hurdles due to the COVID-19 pandemic.
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Key Summary of Regional Analysis and Competitive Landscape:
The report offers a comprehensive overview of the competitive landscape of the Metal Matrix Nanocomposites industry. The competitive landscape includes extensive profiling and overview of prominent players of the Metal Matrix Nanocomposites industry. The report studies the following companies in detail: Nanocor Inc., Zyvex Technologies, Du Pont De Nemours, Arkema Inc., Powdermet Inc., Nanophase Technologies Corporation, Unidym Inc., Nanocyl S.A., Inframat Corporation and Evonik Industries AG.
Radical Highlights of the Metal Matrix Nanocomposites Market Report:
The research report provides an accurate analysis of the product range, application spectrum, regional analysis, and competitive landscape of the Metal Matrix Nanocomposites industry.
Product Outlook (Revenue: USD Billion; Volume: Million Tons; 2017-2027)
Carbon Nanotubes
Nanoclay
Metal Oxide
Nanofiber
Graphene
Others
Type Outlook (Revenue: USD Billion; Volume: Million Tons; 2017-2027)
Ceramic-matrix
Metal-matrix
Polymer-matrix
Magnetic
Application Outlook (Revenue: USD Billion; Volume: Million Tons; 2017-2027)
Packaging
Automotive
Aviation
Electronics & Electrical
Military
Construction
Biomedical
Others
The report offers key details about the production volume and price analysis. The report further provides key insights into the market share held by each product and application in the Metal Matrix Nanocomposites market. Moreover, it also offers radical information about growth prospects and patterns. It also provides extensive coverage of the product consumption of each application and product. The report also provides a pricing analysis and growth trends for the key segments of the market.
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Along with the basic information, the report also offers insights into marketing strategies readily adopted by the key manufacturers for the endorsement of their products. The report offers significant data pertaining to development trends and market position to offer deeper insights into targeted clients, brand promotions, and pricing analysis. The report also sheds light on the supply chains and the changes in the trends of the upstream raw materials and downstream distributors.
The report explains the market share and sales volume of each company, along with the key details of the operations of these companies. The report further offers extensive coverage of their product portfolio, business expansion plans, gross profit margins, revenue contribution, investment plans, and financial standings. The report also covers the strategic alliances observed within these key companies such as mergers and acquisitions, joint ventures, corporate and government deals, partnerships and agreements, and brand promotions and product launches.
To know more about the report, click @ https://www.reportsanddata.com/report-detail/nanocomposites-market
Furthermore, the research study gives additional insights into the companies’ regional presence through extensive regional analysis. The regional analysis covers the key geographical regions such as North America, Latin America, Europe, Asia-Pacific, and the Middle East & Africa. The regional analysis segment covers details about the market share held by each region along with the prospective growth opportunities and revenue generation. The report also offers a projection of the growth rate for each region in the entirety of the forecast timeline. It also offers a country-wise analysis to impart a better understanding of the industry.
Browse Related Reports –
Carbon Nanotubes Market Future Growth with Technology and Outlook 2020 to 2027 – https://www.reportsanddata.com/report-detail/carbon-nanotubes-market
Recycled Plastics Market 2027: Regional Trend & Growth Projections – https://www.reportsanddata.com/report-detail/recycled-plastics-market
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