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Ideal Three-Dimensional Electrode Structures for Electrochemical Energy Storage

机译:电化学能量存储的理想三维电极结构

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摘要

Three-dimensional electrodes offer great advantages, such as enhanced ion and electron transport, increased material loading per unit substrate area, and improved mechanical stability upon repeated charge-discharge. The origin of these advantages is discussed and the criteria for ideal 3D electrode structure are outlined. One of the common features of ideal 3D electrodes is the use of a 3D carbon- or metal-based porous framework as the structural backbone and current collector. The synthesis methods of these 3D frameworks and their composites with redox-active materials are summarized, including transition metal oxides and conducting polymers. The structural characteristics and electrochemical performances are also reviewed. Synthesis of composite 3D electrodes is divided into two types - template-assisted and template-free methods - depending on whether a pre-made template is required. The advantages and drawbacks of both strategies are discussed.
机译:三维电极具有很大的优势,例如增强了离子和电子的传输,增加了单位基板面积的材料负荷以及在反复充放电后提高了机械稳定性。讨论了这些优点的来源,并概述了理想3D电极结构的标准。理想的3D电极的共同特征之一是使用基于碳或金属的3D多孔框架作为结构骨架和集电器。总结了这些3D框架及其与氧化还原活性材料的复合材料的合成方法,包括过渡金属氧化物和导电聚合物。还审查了结构特征和电化学性能。复合3D电极的合成分为两种类型-模板辅助方法和无模板方法-取决于是否需要预制模板。讨论了这两种策略的优缺点。

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  • 来源
    《Advanced Materials》 |2014年第15期|2440-2445|共6页
  • 作者单位

    College of Engineering Mathematics and Physical Sciences University of Exeter Cornwall Campus, Penryn, Cornwall, TR10 9EZ, UK;

    College of Engineering Mathematics and Physical Sciences University of Exeter Cornwall Campus, Penryn, Cornwall, TR10 9EZ, UK;

    Department of Chemical and Environmental Engineering Faculty of Engineering University of Nottingham University Park, Nottingham, NG7 2RD, UK;

    College of Engineering Mathematics and Physical Sciences University of Exeter The Queen's Drive, Exeter, Devon, EX4 4QJ, UK;

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