Global Graphene and 2D Materials Markets 2021-2031: Future Product Development in Flexible Electronics, Smart Textiles, Biosensors, Drug Delivery, Water Filtration, Supercapacitors
DUBLIN, Feb. 17, 2021 /PRNewswire/ -- The "The Global Market for Graphene and 2D Materials 2021-2031" report has been added to ResearchAndMarkets.com's offering.
The Global Market for Graphene 2021-2031 is the most comprehensive and up-to-date report on graphene currently available, by the world's leading market authority on graphene.
The market for graphene has grown hugely in the past decade, with numerous products now on the market and more to come as graphene producers record steadily increasing revenues and OEMs witnessing significant returns in clothing, sportswear, footwear, tires, batteries etc. Graphene is attracting increasing attention from investors, researchers and industrial players due to exceptional mechanical, electronic, and thermal properties.
Graphene is available in multi-ton quantities from many producers and has been identified by many industry sectors as a key materials that will drive future product development in flexible electronics, smart textiles, biosensors, drug delivery, water filtration, supercapacitors and more.
Profiling 286 companies, the report provides key information for investors and executives to enable them to understand and take advantage of the opportunities provided by graphene (other 2D materials are also covered).
The Global Market for Graphene 2021-2031 contains:
- Unique market assessment tools to assess the viability of graphene, by market, and application.
- Tabular data on current graphene products.
- Market assessment of other 2D materials.
- Assessment of graphene by market including applications, key benefits, market megatrends, market drivers for graphene, technology drawbacks, competing materials, potential consumption of graphene to 2031 and main players.
- Graphical depictions of graphene applications by market.
- In depth-assessment of graphene producer and distributor pricing in 2020.
- Global market for graphene in tons, by sector, historical and forecast to 2031. Global graphene market size split by market in 2019 and for each application to 2030.
- Full list of technology collaborations, strategic partnerships, and M&As in the global graphene market including collaboration dates.
- In-depth profiles of 280 graphene producers and application/product developers including products, production capacities, manufacturing methods, collaborations, licensing, customers and target markets. Companies profiled include Directa Plus, Global Graphene Group, ZEN Graphene Solutions, HP1 Technologies Ltd, GrapheneCA, Saint Jean Carbon, SafeLi LLC, Versarien, Talga Resources, Archer Materials, Haydale Graphene, Paragraf, Graphenea and many more.
- List of ex-graphene producers.
- Detailed forecasts for key growth areas, opportunities and demand.
- Market impact of COVID-19 crisis on the graphene market, by end user industry.
- Market overview of industry developments in 2020.
- Analysis of 2D materials market including Boron Nitride nanotubes (BNNTs), hexagonal boron-nitride (BNNS), transition metal dichalcogenides (TMDC), Mxenes, Borophene, Phosphorene, Graphitic carbon nitride, Germanene, Graphyne, graphane, Rhenium disulfide (ReS2) and diselenide (ReSe2), silicene, Stanene/tinene, Tungsten diselenide, Antimonene, diamene and indium selenide.
Additional content from the previous edition includes:
- Review of market in 2020.
- Outlook for market in 2021.
- Expanded graphene quantum dots chapter.
- SWOT analysis.
- Industry supply chain analysis.
- Assessment of key global players.
- Analysis of mrket in China.
- Analysis of audio equipment and sporting goods market.
Key Topics Covered:
1 EXECUTIVE SUMMARY 1.1 Why graphene? 1.1.1 Exceptional properties 1.1.2 Commercial opportunities 1.1.3 Collaboration key? 1.2 The market in 2019 1.3 The market in 2020 1.4 The market in 2021 1.5 Future global market outlook 1.6 Graphene producers and production capacities 1.7 Global graphene demand, 2018-2031, tons 1.7.1 Market segmentation, historical and forecast to 2031 1.8 Graphene market by region 1.8.1 Asia-Pacific 1.8.1.1 China 1.8.1.2 Main graphene producers in Asia-Pacific 1.8.2 North America 1.8.2.1 Main graphene producers in North America 1.8.3 Europe 1.8.3.1 Main graphene producers in Europe 1.9 List of commercialized graphene products 1.10 Graphene investments 1.11 Industrial collaborations and licence agreements 1.12 Graphene market challenges 1.13 Market impact from COVID-19 pandemic
2 OVERVIEW OF GRAPHENE 2.1 History 2.2 Types of graphene 2.3 Properties
3 GRAPHENE QUANTUM DOTS 3.1 Composition 3.2 Comparison to quantum dots 3.3 Properties 3.4 Synthesis 3.4.1 Top-down method 3.4.2 Bottom-up method 3.4.3 Comparison of synthesis methods 3.5 Applications 3.6 Markets 3.6.1 Electronics and photonics 3.6.2 Energy storage and conversion 3.6.3 Sensors 3.6.4 Biomedicine and life sciences 3.6.5 Anti-counterfeiting 3.7 Challenges 3.8 Technology readiness level (TRL) 3.9 Production of graphene quantum dots 3.9.1 Current and projected revenues 3.9.2 Pricing
4 GRAPHENE PRODUCTION 4.1 Quality 4.2 Assessment of graphene production methods
5 REGULATIONS 5.1 Environmental, health and safety regulation 5.1.1 Europe 5.1.2 United States 5.1.3 Asia-Pacific 5.2 Workplace exposure
6 GRAPHENE PATENTS AND PUBLICATIONS
7 GRAPHENE PRODUCTION 7.1 Commercial production capacities 7.2 Graphene oxide and reduced Graphene Oxide production capacities 7.2.1 By producer 7.2.2 By region 7.3 Graphene nanoplatelets production capacities 7.3.1 By producer 7.3.2 Production capacity by region 7.4 CVD graphene film 7.4.1 By producer 7.5 Graphene production issues and challenges 7.5.1 Oversupply 7.5.2 Quality 7.5.3 Large-volume markets 7.5.4 Commoditisation 7.5.5 Industrial end-user perspective
8 GRAPHENE INDUSTRY SUPPLY CHAIN
9 SWOT ANALYSIS
10 GRAPHENE PRICING 10.1 Pristine graphene flakes pricing/CVD graphene 10.2 Few-Layer graphene pricing 10.3 Graphene nanoplatelets pricing 10.4 Graphene oxide (GO) and reduced Graphene Oxide (rGO) pricing 10.5 Graphene quantum dots pricing 10.6 Multilayer graphene (MLG) pricing 10.7 Graphene ink
11 MARKETS FOR GRAPHENE 11.1 GRAPHENE IN 3D PRINTING 11.1.1 Market overview 11.1.2 Market prospects 11.1.3 Market assessment 11.1.4 Applications map 11.1.5 Global market in tons, historical and forecast to 2030 11.1.6 Product developers 11.2 Graphene In Adhesives 11.3 Graphene In Automotive 11.4 Graphene In Batteries 11.5 Graphene In Composites 11.6 Graphene In Conductive Inks 11.7 Graphene In Construction Materials 11.8 Graphene In Electronics 11.8.1 Wearable Electronics And Displays 11.8.2 Graphene In Transistors And Integrated Circuits 11.8.3 Graphene In Memory Devices 11.9 Graphene In Filtration 11.10 Graphene In Fuel Cells 11.11 Graphene In Life Sciences And Medicine 11.11.1 Market overview 11.11.2 Market prospects 11.11.2.1 Drug delivery 11.11.2.2 Imaging and diagnostics 11.11.2.3 Implants 11.11.2.4 Medical biosensors 11.11.2.5 Woundcare 11.11.2.6 Medical wearables 11.11.3 Market assessment 11.11.4 Applications map 11.11.5 Global market in tons, historical and forecast to 2030 11.11.6 Product developers 11.12 Graphene In Lighting 11.13 Graphene In Lubricants 11.14 Graphene In Oil And Gas 11.15 Graphene In Paints And Coatings 11.16 Graphene In Photonics 11.17 Graphene In Photovoltaics 11.18 Graphene In Rubber And Tires 11.19 Graphene In Sensors 11.20 Graphene In Smart Textiles And Apparel 11.21 Graphene In Supercapacitors 11.22 OTHER MARKETS 11.22.1 Audio equipment 11.22.2 Sporting goods and apparel
12 GRAPHENE PRODUCER ASSESSMENT
13 GRAPHENE COMPANY PROFILES-PRODUCERS AND PRODUCT DEVELOPERS
14 APPLICATIONS ANALYSIS
15 GRAPHENE EX-PRODUCERS AND PRODUCT DEVELOPERS
16 OTHER 2-D MATERIALS 16.1 BORON NITRIDE NANOTUBES (BNNT) 16.1.1 Properties 16.1.2 Applications 16.1.3 Production 16.2 HEXAGONAL BORON-NITRIDE (BNNS) 16.2.1 Properties 16.2.2 Applications 16.2.2.1 Electronics 16.2.2.2 Fuel cells 16.2.2.3 Adsorbents 16.2.2.4 Photodetectors 16.2.2.5 Textiles 16.2.2.6 Biomedical 16.3 TRANSITION METAL DICHALCOGENIDES (TMDCs) 16.3.1 Properties 16.3.2 Applications 16.3.2.1 Electronics 16.3.2.2 Photovoltaics 16.3.2.3 Piezoelectrics 16.3.2.4 Sensors 16.3.2.5 Filtration 16.3.2.6 Batteries 16.3.2.7 Fiber lasers 16.4 BOROPHENE 16.5 PHOSPHORENE 16.5.1 Properties 16.5.1.1 Fabrication methods 16.5.1.2 Challenges for the use of phosphorene in devices 16.5.2 Applications 16.5.2.1 Electronics 16.5.2.2 Batteries 16.5.2.3 Photodetectors 16.5.2.4 Sensors 16.6 GRAPHITIC CARBON NITRIDE (g-C3N4) 16.6.1 Properties 16.6.2 Synthesis 16.6.3 C2N 16.6.4 Applications 16.6.4.1 Electronics 16.6.4.2 Filtration membranes 16.6.4.3 Photocatalysts 16.6.4.4 Batteries (LIBs) 16.6.4.5 Sensors 16.7 GERMANENE 16.8 GRAPHDIYNE 16.8.1 Properties 16.8.2 Applications 16.8.2.1 Electronics 16.8.2.2 Batteries 16.8.2.3 Separation membranes 16.8.2.4 Water filtration 16.8.2.5 Photocatalysts 16.8.2.6 Photovoltaics 16.9 Graphane 16.10 Rhenium Disulfide (Res2) And Diselenide (Rese2) 16.11 Silicene 16.12 Stanene/Tinene 16.13 Tungsten Diselenide 16.14 Antimonene 16.15 Diamene 16.16 Indium Selenide 16.17 Comparative Analysis Of Graphene And Other 2D Materials
17 RESEARCH METHODOLOGY 17.1 Market opportunity analysis 17.2 Technology Readiness Level (TRL) 17.3 Properties of nanomaterials
18 REFERENCES
For more information about this report visit https://www.researchandmarkets.com/r/9j7olf
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