RnRMarketResearch.com adds The Graphene and 2-D Materials Global Opportunity Report new market research report in its store.
Two-dimensional (2D) materials are currently one of the most active areas of nanomaterials research, and offer a huge opportunity for both fundamental studies and practical applications, including superfast, low-power, flexible and wearable electronics, sensors, photonics and electrochemical energy storage devices that will have an immense impact on our society.
Complete report spreads across 650 pages, analysing major leaders and providing tables and figures is available at http://www.rnrmarketresearch.com/the-global-market-for-graphene-and-2-d-materials-technologies-production-end-user-markets-and-opportunities-analysis-2015-2025-market-report.html.
Graphene is a ground-breaking 2D material that possesses
extraordinary electrical and mechanical properties that promise a new
generation of innovative devices. New methods of scalable synthesis of
high-quality graphene, clean delamination transfer and device integration have
resulted in the commercialization of state-of-the-art electronics such as
graphene touchscreens in smartphones and flexible RF devices on plastics.
Beyond graphene, emerging elementary 2D materials such as transition metal dichalcogenides, group V systems including phosphorene, and related isoelectronic structures will potentially allow for flexible electronics and field-effect transistors that exhibit ambipolar transport behaviour with either a direct band-gap or greater gate modulation.
Graphene exhibits a unique combination of mechanical, thermal, electronic and optical properties that provide opportunities for new innovation in:
Electronics & photonics: Conductive electrode films for flexible displays; 2D printable and transparent ultrathin electronic devices; 2D transistors and circuits; RFID tags; 2D magnetic semiconductors; Conductive inks for wearable electronics; 2d MOSFETs; Inkjet-printed electronics; Flexible Graphene FETs; Flexible TMD FETs for digital logic and RF; Graphene optical modulators.
Energy: Li-ion battery additives; Proton exchange fuel cell membranes; Hydrogen fuel cells; Graphene electrodes for supercapacitors; Transparent electrodes in photovoltaic cells.
about Report at
Automotive: Tire additives for improved abrasion resistance; Anti-scratch and anti-corrosion coatings; Automotive composites; Anti-fogging coatings.
Aerospace: De-icing coatings; Electrically conductive composites; EMI shielding coatings; Anti-corrosion coatings; Glass additives.
Biomedicine and healthcare: Tissue engineering scaffols to facilitate cell growth and tissue regeneration; Carriers for drug delivery; Biosensor chips; Brain electrodes; Anti-bacterial materials; Gene therapy; Photodynamic therapy; Cell imaging.
Polymer composites: Nanocomposites for wind turbines; Barrier packaging materials; ESD and EMI shielding; Sporting goods composites (e.g. bike tires); Composites with improved conductive and thermal properties.
Filtration: Gas separation membranes; Photocatalytic absorbents; Ultrathin, high-flux and energy-efficient sieving membranes.
Sensors: Electrochemical sensors; DNA detection platforms; Pressure sensors; Optical sensors; Humidity sensors; Acoustic sensors; Wireless sensors.
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