Liu Shude, Kang Ling, Jun Seong Chan
School of Mechanical Engineering, Yonsei University, Seoul, 120-749, South Korea.
Shanghai Key Laboratory of Multidimensional Information Processing, East China Normal University, 500 Dongchuan Road, Shanghai, 200241, China.
Adv Mater. 2021 Nov;33(47):e2004689. doi: 10.1002/adma.202004689. Epub 2021 Jan 14.
With increasing demand for grid-scale energy storage, potassium-ion batteries (PIBs) have emerged as promising complements or alternatives to commercial lithium-ion batteries owing to the low cost, natural abundance of potassium resources, the low standard reduction potential of potassium, and fascinating K transport kinetics in the electrolyte. However, the low energy density and unstable cycle life of cathode materials hamper their practical application. Therefore, cathode materials with high capacities, high redox potentials, and good structural stability are required with the advancement toward next-generation PIBs. To this end, understanding the structure-dependent intercalation electrochemistry and recognizing the existing issues relating to cathode materials are indispensable prerequisites. This review summarizes the recent advances of PIB cathode materials, including metal hexacyanometalates, layered metal oxides, polyanionic frameworks, and organic compounds, with an emphasis on the structural advantages of the K intercalation reaction. Moreover, major current challenges with corresponding strategies for each category of cathode materials are highlighted. Finally, future research directions and perspectives are presented to accelerate the development of PIBs and facilitate commercial applications. It is believed that this review will provide practical guidance for researchers engaged in developing next-generation advanced PIB cathode materials.
随着对电网规模储能需求的不断增加,钾离子电池(PIB)因其成本低、钾资源天然丰富、钾的标准还原电位低以及在电解质中具有迷人的钾传输动力学,已成为商用锂离子电池有前景的补充或替代品。然而,正极材料的低能量密度和不稳定的循环寿命阻碍了它们的实际应用。因此,随着向下一代PIB的发展,需要具有高容量、高氧化还原电位和良好结构稳定性的正极材料。为此,了解结构相关的嵌入电化学并认识到与正极材料相关的现有问题是必不可少的先决条件。本文综述了PIB正极材料的最新进展,包括金属六氰基金属酸盐、层状金属氧化物、聚阴离子骨架和有机化合物,重点介绍了钾嵌入反应的结构优势。此外,还强调了每类正极材料当前面临的主要挑战及相应策略。最后,提出了未来的研究方向和展望,以加速PIB的发展并促进其商业应用。相信这篇综述将为从事开发下一代先进PIB正极材料的研究人员提供实用指导。