Computational design of promising 2D electrode materials for Li-ion and Li–S battery applications

Ke Fan, Yuen Hong Tsang, Haitao Huang
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引用次数: 3

Abstract

Lithium-ion batteries (LIBs) and lithium-sulfur (Li–S) batteries are two types of energy storage systems with significance in both scientific research and commercialization. Nevertheless, the rational design of electrode materials for overcoming the bottlenecks of LIBs and Li–S batteries (such as low diffusion rates in LIBs and low sulfur utilization in Li–S batteries) remain the greatest challenge, while two-dimensional (2D) electrodes materials provide a solution because of their unique structural and electrochemical properties. In this article, from the perspective of ab-initio simulations, we review the design of 2D electrode materials for LIBs and Li–S batteries. We first propose the theoretical design principles for 2D electrodes, including stability, electronic properties, capacity, and ion diffusion descriptors. Next, classified examples of promising 2D electrodes designed by theoretical simulations are given, covering graphene, phosphorene, MXene, transition metal sulfides, and so on. Finally, common challenges and a future perspective are provided. This review paves the way for rational design of 2D electrode materials for LIBs and Li–S battery applications and may provide a guide for future experiments.

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用于锂离子和锂硫电池应用的有前景的二维电极材料的计算设计
锂离子电池(LIBs)和锂硫电池(Li-S)是两种具有重要科学研究和商业化意义的储能系统。然而,合理设计电极材料以克服锂离子电池和锂硫电池的瓶颈(如锂离子电池的低扩散速率和锂硫电池的低硫利用率)仍然是最大的挑战,而二维(2D)电极材料由于其独特的结构和电化学性能提供了一个解决方案。本文从从头算模拟的角度,回顾了锂离子电池和锂硫电池的二维电极材料的设计。我们首先提出二维电极的理论设计原则,包括稳定性、电子特性、容量和离子扩散描述符。其次,给出了通过理论模拟设计的有前途的二维电极的分类示例,包括石墨烯、磷烯、MXene、过渡金属硫化物等。最后,提出了共同的挑战和未来的展望。该综述为锂离子电池和锂硫电池应用的二维电极材料的合理设计铺平了道路,并可为今后的实验提供指导。
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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来源期刊
材料导报:能源(英文)
材料导报:能源(英文) Renewable Energy, Sustainability and the Environment, Nanotechnology
CiteScore
13.00
自引率
0.00%
发文量
0
审稿时长
50 days
期刊最新文献
Outside Front Cover Contents Tailoring solvation sheath for rechargeable zinc-ion batteries: Progress and prospect Electrolyte engineering and interphase chemistry toward high-performance nickel-rich cathodes: Progress and perspectives Unveiling the effect of molybdenum and titanium co-doping on degradation and electrochemical performance in Ni-rich cathodes
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