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Controlled partial-exfoliation of graphite foil and integration with MnO2 nanosheets for electrochemical capacitors

机译:控制partial-exfoliation石墨箔与汇总nanosheets和集成电化学电容器

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摘要

Here we demonstrate a controlled two-step partial exfoliation method to synthesize functionalized exfoliated graphite substrates. Ultrathin and functionalized graphene sheets anchoring on the graphite provide a large conductive surface area for loading pseudo-capacitive MnO2 nanosheets. The functionalized exfoliated graphite/MnO2 electrode achieved an excellent areal capacitance of 244 mF cm(-2), corresponding to an estimated MnO2 based gravimetric capacitance of 1061 F g(-1), which is just slightly lower than its theoretical value of 1110 F g(-1). More importantly, the seamless integration of graphene sheets and the graphite substrate minimizes the contact resistance, and substantially improves the rate capability of pseudo-capacitive materials. The electrode retained 44.8% of its capacitance when the charging current density increased 50 times from 0.23 to 11.5 mA cm(-2). This novel functionalized exfoliated graphite substrate serves as a promising supporting material that could address the relatively low electrical conductivity of various pseudo-capacitive materials, and increase the mass loading and rate capability of pseudo-capacitors.
机译:在这里我们展示一种两步部分控制剥离方法合成功能化剥落石墨基质。功能化石墨烯表上锚定石墨为导电面积加载pseudo-capacitive汇总nanosheets。功能化剥落石墨/汇总电极实现了优秀的面积电容244厘米(2),曼氏金融相应的估计汇总的基础重量1061 F的电容g(1),也就是略低于它理论的价值1110 F g(1)。重要的是,石墨烯的无缝集成床单和石墨衬底最小化接触电阻,大幅提高pseudo-capacitive的速度能力材料。电容的充电电流密度增加50倍马从0.23到11.5厘米(2)。这本小说功能化石墨剥落了基质作为有前途的支持材料,可以解决相对较低导电性不同的pseudo-capacitive材料,增加质量负载和速度的能力pseudo-capacitors。

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