用于金属钾阳极的先进3d结构电极

Dongqing Liu, Jun Shen, Zelang Jian, Xingke Cai
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引用次数: 1

摘要

继“圣杯”锂金属阳极之后,钾(K)金属阳极是下一代电池最有前途的阳极材料之一。与Li相比,K表现出更明显的储能特性。然而,它面临着与大多数碱金属阳极类似的挑战,例如安全性和可循环性问题。借鉴Li/Na金属阳极的策略,三维(3D)结构集流器已被证明是一种普遍有效的策略。本研究考察了K金属阳极3d结构电极的最新研究进展,重点关注了最常用的主体材料,包括碳、金属和mxene相关电极材料。最后,对目前存在的挑战、合理设计K金属阳极的各种观点以及K电池的未来发展进行了展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advanced 3D-structured electrode for potassium metal anodes
The potassium (K) metal anode, following the "Holy Grail" Li metal anode, is one of the most promising anode materials for next-generation batteries. In comparison with Li, K exhibits even more pronounced energy storage properties. However, it suffers from similar challenges as most alkali metal anodes, such as safety and cyclability issues. Borrowing strategies from Li/Na metal anodes, the three-dimensional (3D)-structured current collector has proven to be a universal and effective strategy. This study examines the recent research progress of 3D-structured electrodes for K metal anodes, focusing on the most commonly used host materials, including carbon-, metal-, and MXene-related electrode materials. Finally, existing challenges, various perspectives on the rational design of K metal anodes, and the future development of K batteries are presented.
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