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Development of an All Solid State Battery Incorporating Graphene Oxide as Proton Conductor

机译:含氧化石墨烯作为质子导体的全固态电池的开发

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摘要

Graphene oxide (GO) shows high proton conductivity (≈10−4 Scm−1), excellent mechanical stability, and electrical insulation property, which makes it an ideal candidate for use as a proton conducting solid state electrolyte. The prospects of using GO as single phase solid electrolyte in an all solid battery is presented herein. A battery with the cell configuration: Zn + ZnSO4•7H2O + graphite (anode) || GO (electrolyte) || MnO2 + graphite (cathode) is fabricated. Cyclic voltammetry confirms its rechargeable nature. The respective discharge capacity and power density of the cell are 360 μAh and 19.5 mW kg−1 at a constant current drain of 3 μA under the experimental conditions employed. GO based proton conductors are cleaner and cheaper than other solid electrolytes. The current study strongly suggests that GO can be used as a practical and beneficial component in solid state battery applications with low energy feedback.
机译:氧化石墨烯(GO)表现出高质子传导性(≈10 −4 Scm -1 ),出色的机械稳定性和电绝缘性,使其成为理想的使用对象作为质子传导固体电解质。本文介绍了在全固态电池中使用GO作为单相固态电解质的前景。具有以下电池配置的电池:Zn + ZnSO4•7H2O +石墨(阳极)|| GO(电解质)||制作MnO2 +石墨(阴极)。循环伏安法证实了其可充电性。在采用的实验条件下,在3μA的恒定电流消耗下,电池的放电容量和功率密度分别为360μAh和19.5 mW kg -1 。 GO基质子导体比其他固体电解质更清洁,更便宜。当前的研究强烈表明,GO可以在低能量反馈的固态电池应用中用作实用且有益的组件。

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