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Graphene is a material with high potential to replace electrode materials such as indium tin oxide in electrical and optical devices. It combines several advantageous characteristics including low sheet resistance, high optical transparency and excellent mechanical properties. The following graphene types are Hydrogen production without platinum, lower cost of display screens in mobile device, Lithium-ion batteries that recharge faster, Ultra capacitors with better performance than batteries, Components with higher strength to weight ratios, Storing hydrogen for fuel cell powered cars, Lower cost fuel cells, low cost water desalination, Lightweight natural gas tanks, More efficient dye sensitized solar cells, Electrodes with very high surface area and very low electrical resistance, Lower cost solar cells, Transistors that operate at higher frequency, Sensors to diagnose diseases, Membranes for separation of gases, and Chemical sensors effective at detecting explosives.
Edelweiss Nanomaterial chemistry and technology journal is a scholarly journal that aims to publish most complete and reliable source of information on the findings and current developments in the form of original Research, Review, Opinion articles, Case reports, Mini review, Short communication. Edelweiss Nanomaterial chemistry and technology Journal publishes manuscripts on Graphene Electrode.
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Related article links for Graphene electrode will appear here as matching content is published in Nanomaterial Chemistry and Technology (ISSN 2690-2575). Readers can also browse the journal archive and current issue for connected research.