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替代能源存储研究和技术中心

Center for Alternative Energy Storage Research and Technology
作者:Drzal, L. T.Sakamoto, J. 作者单位:Michigan State Univ., East Lansing. 加工时间:2014-04-16 信息来源:科技报告(AD) 索取原文[82 页]
关键词:新能源与高效节能;储能技术;陶瓷电解质膜;导电聚合物
摘 要:Electrolytes, nano-structuring and graphene nanoplatelets for electrodes, and current collectors in batteries and supercapacitors were investigated. The following results were obtained: i) Nano-structuring of graphene nanoplatelets with and without conductive polymers produced supercapacitors with very high specific capacitance (>165 F/gm) and high frequency (>150 Hz) response with low losses; ii) graphene nanoplatelet thin films can replace copper current collectors in energy storage devices and save weight ~80% and reduced cost.
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