Designing carbon anodes for advanced potassium-ion batteries: Materials, modifications, and mechanisms

Xuehui Wang, Huanlei Wang
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引用次数: 36

Abstract

Recently, the limited abundance and uneven geographical distribution of Li resources seriously hamper the growing demand for lithium-based energy storage devices. In this regard, potassium-ion batteries (KIBs) sharing similar “rocking chair” working principles with lithium-ion batteries have started to attract increasing attention due to their high energy density and abundant potassium resources. Carbon material is considered to show great potential for using as high-performance anode in KIBs. However, it is still a challenge to simultaneously achieve satisfactory specific gravimetric and volumetric capacities, high initial Coulombic efficiency, superior rate performance, and excellent cycle stability due to the sluggish reaction kinetics of the large-sized K-ions. Herein, we summarize the latest research achievements of different types of carbon anodes for KIBs, including graphite, graphene, hard carbon, soft carbon, and carbon nanotubes, in which the key factors affecting the electrochemical performance are explored. Importantly, the alternative strategies for addressing the low gravimetric/volumetric capacity and low initial Coulombic efficiency of carbons are thoroughly emphasized. Finally, the critical issues, challenges, and perspectives are proposed to show the development direction of KIBs. We hope this review can provide researchers with new ideas to design high-performance carbon materials and give insightful perspectives to accelerate the application of carbon electrodes for KIBs.

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设计先进钾离子电池的碳阳极:材料、修饰和机制
近年来,锂资源的有限丰度和不均匀的地理分布严重阻碍了锂基储能设备的需求增长。在这方面,与锂离子电池具有类似“摇椅”工作原理的钾离子电池(kib)因其高能量密度和丰富的钾资源而开始受到越来越多的关注。碳材料被认为是极具潜力的高性能阴极材料。然而,由于大尺寸k离子的反应动力学缓慢,同时实现令人满意的比重量和体积容量、高初始库仑效率、优异的速率性能和良好的循环稳定性仍然是一个挑战。本文综述了石墨、石墨烯、硬碳、软碳、碳纳米管等不同类型kib碳阳极的最新研究成果,并对影响其电化学性能的关键因素进行了探讨。重要的是,彻底强调了解决碳的低重量/体积容量和低初始库仑效率的替代策略。最后,提出了关键问题、挑战和展望,以显示知识产权的发展方向。我们希望本综述能够为研究人员设计高性能碳材料提供新的思路,并为加速kib碳电极的应用提供有见地的观点。
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