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On the controlled electrochemical preparation of R4N+ graphite intercalation compounds and their host structural deformation effects

机译:R4N +石墨插层化合物的可控电化学制备及其主体结构变形效应

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摘要

We present electrochemical studies of tetraalkylammonium (R4N+) reduction chemistry at Highly Orientated Pyrolytic Graphite (HOPG) and glassy carbon (GC) electrodes. We show that by electrochemically controlled intercalation and formation of a graphite intercalation complex (GIC) into layered HOPG, the irreversible reduction of the tetraalkylammonium cation can be prevented and subsequent de-intercalation of the GIC via the use of potentiostatic control is achievable. R4N+ cations with varying alkyl chain lengths (methyl, ethyl and butyl) have been shown to exhibit excellent charge recovery effects during charge/discharge studies. Finally the effects of electrode expansion on the degree of recovered charge have been investigated and the observed effects of R4N+ intercalation on the graphite cathode have been probed by scanning electron microscopy (SEM) and X-ray diffraction (XRD). (C) 2014 The Authors. Published by Elsevier B.V.
机译:我们目前在高度取向的热解石墨(HOPG)和玻璃碳(GC)电极上对四烷基铵(R4N +)还原化学进行电化学研究。我们表明,通过电化学控制插层和形成层状HOPG的石墨插层复合物(GIC),可以防止四烷基铵阳离子的不可逆还原,并且可以通过使用恒电位控制实现GIC的后续脱嵌。在充电/放电研究过程中,具有不同烷基链长度(甲基,乙基和丁基)的R4N +阳离子显示出优异的电荷恢复效果。最后,研究了电极膨胀对回收电荷程度的影响,并通过扫描电子显微镜(SEM)和X射线衍射(XRD)探索了观察到的R4N +插层对石墨阴极的影响。 (C)2014作者。由Elsevier B.V.发布

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