Engineering strategies of metal-organic frameworks toward advanced batteries

Ruimin Sun, Mingyue Dou, Ziliang Chen, Ruirui Wang, Xiangyi Zheng, Yuxiang Zhang, Chenggang Zhou, Prashanth W. Menezes
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引用次数: 3

Abstract

Metal-organic frameworks (MOFs) integrate several advantages such as adjustable pore sizes, large specific surface areas, controllable geometrical morphology, and feasible surface modification. Benefiting from these appealing merits, MOFs have recently been extensively explored in the field of advanced secondary batteries. However, a systematic summarization of the specific functional units that these materials can act as in batteries as well as their related design strategies to underline their functions has not been perceived to date. Motivated by this point, this review dedicates to the elucidation of diverse functions of MOFs for batteries, which involve the electrodes, separators, interface modifiers, and electrolytes. Particularly, the main engineering strategies based on the physical and chemical features to enable their enhanced performance have been highlighted for the individual functions. In addition, perspectives and possible research questions in the future development of these materials have also been outlined. This review captures such progress ranging from fundamental understanding and optimized protocols to multidirectional applications of MOF-based materials in advanced secondary batteries.

Abstract Image

面向先进电池的金属有机框架工程策略
金属有机框架(MOFs)具有孔径可调、比表面积大、几何形态可控和表面改性可行等优点。得益于这些吸引人的优点,MOFs最近在先进的二次电池领域得到了广泛的探索。然而,到目前为止,还没有对这些材料可以在电池中发挥作用的特定功能单元及其相关设计策略进行系统总结,以强调其功能。基于这一点,本综述致力于阐明MOFs在电池中的各种功能,包括电极、隔膜、界面改性剂和电解质。特别是,强调了基于物理和化学特征的主要工程策略,以提高其性能。此外,还概述了这些材料未来发展的前景和可能的研究问题。这篇综述涵盖了从基本理解和优化协议到MOF基材料在先进二次电池中的多向应用等方面的进展。
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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CiteScore
4.60
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