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Charge Storage in Graphene Oxide: Impact of the Cation on Ion Permeability and Interfacial Capacitance

机译:石墨烯氧化物中的电荷储存:阳离子对离子渗透率和界面电容的影响

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The charge storage and membrane applications of graphene oxide (GO) materials are dictated by its intrinsic material properties. Structure-function relationships correlating periodic parameters, such as the hydrated ion radius and ion-GO interactions, are currently lacking yet are needed to provide insight on the charge storage and ion transport mechanism. We report the use of scanning ion conductance microscopy to measure the ion permeability of GO films and evaluate its relationship with the measured capacitance. We demonstrate that species (namely K+) with strong electrostatic interactions with the oxygen functionalities of GO provide the benefit of higher capacitance but suffer from inhibited ion mobility due to constriction of the GO interlayer spacing
机译:石墨烯氧化物(GO)材料的电荷储存和膜应用由其内在材料特性决定。 目前尚未缺乏关联周期参数,例如水合离子半径和离子去相互作用的结构功能关系,以提供对电荷存储和离子传输机制的洞察力。 我们报告使用扫描离子电导显微镜测量去膜的离子渗透性,并评估其与测量电容的关系。 我们证明了具有与氧函数强的静电相互作用的物种(即K +)提供了较高电容的益处,而是由于Go中间间距的收缩而受到抑制的离子迁移

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