离子在石墨烯上的存储动力学

IF 24.5 Q1 CHEMISTRY, PHYSICAL Interdisciplinary Materials Pub Date : 2024-02-24 DOI:10.1002/idm2.12146
Minghao Guo, Kun Ni, Yanwu Zhu
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引用次数: 0

摘要

依靠离子与电极之间的相互作用,碳已被广泛用作电化学储能的电极。碳电极的性能由多种因素决定,包括碳材料的结构特征和碳表面吸附的离子在特定环境中的行为。作为石墨碳的基本单元,石墨烯已被用作一种模型,通过各种原位或原位实验和计算方法来了解碳材料的储能机制。本文简要概述了石墨烯离子存储机制的最新研究进展。主题包括碳的结构工程、离子的电门控效应、界面或密闭空间中的离子动力学,特别是石墨烯上的锂离子存储/反应。我们的目标是促进对碳电极电化学的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Storage dynamics of ions on graphene

Carbon has been widely utilized as electrode in electrochemical energy storage, relying on the interaction between ions and electrode. The performance of a carbon electrode is determined by a variety of factors including the structural features of carbon material and the behavior of ions adsorbed on the carbon surface in the specific environment. As the fundamental unit of graphitic carbons, graphene has been employed as a model to understand the energy storage mechanism of carbon materials through various experimental and computational methods, ex-situ or in-situ. In this article, we provide a succinct overview of the state-of-the-art proceedings on the ion storage mechanism on graphene. Topics include the structure engineering of carbons, electric gating effect of ions, ion dynamics on the interface or in the confined space, and specifically lithium-ion storage/reaction on graphene. Our aim is to facilitate the understanding of electrochemistry on carbon electrodes.

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