articleTop 1% cited
Mechanically strong and highly conductive graphene aerogel and its use as electrodes for electrochemical power sources
Journal of Materials Chemistry · 2011 · Vol. 21(18) · pp. 6494–6494
Xuetong Zhang✉(Beijing Institute of Technology)Zhuyin Sui(Beijing Institute of Technology)Bin XuShufang YueYunjun Luo✉(Beijing Institute of Technology)Wanchu Zhan(China Aerospace Science and Industry Corporation (China))Bin Liu(China Aerospace Science and Industry Corporation (China))
Abstract
Mechanically strong and electrically conductive graphene aerogels can be prepared by either supercritical drying or freeze drying of hydrogel precursors synthesized from reduction of graphene oxide with L-ascorbic acid, and the resulting graphene aerogels possess the specific capacitance of 128 F g−1 with superior rate performance.
Supercapacitor Materials and FabricationAerogels and thermal insulationGraphene research and applicationsGrapheneAerogelMaterials scienceAscorbic acidOxideElectrical conductorElectrodeSupercritical fluidCapacitanceElectrochemistry
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References
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The Journal of Physical Chemistry C · 2008 · 2,074 citations
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Vitamin C Is an Ideal Substitute for Hydrazine in the Reduction of Graphene Oxide Suspensions
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