Fan Ling, Hu Yanyao, Rao Apparao M, Zhou Jiang, Hou Zhaohui, Wang Chengxin, Lu Bingan
School of Physics and Electronics, Hunan University, Changsha, 410082, China.
Clemson Nanomaterials Institute, Department of Physics and Astronomy, Clemson University, Clemson, SC, 29634, USA.
Small Methods. 2021 Dec;5(12):e2101131. doi: 10.1002/smtd.202101131. Epub 2021 Nov 10.
Potassium-ion batteries (PIBs) have attracted tremendous attention because of their high energy density and low-cost. As such, much effort has focused on developing electrode materials and electrolytes for PIBs at the material levels. This review begins with an overview of the high-performance electrode materials and electrolytes, and then evaluates their prospects and challenges for practical PIBs to penetrate the market. The current status of PIBs for safe operation, energy density, power density, cyclability, and sustainability is discussed and future studies for electrode materials, electrolytes, and electrode-electrolyte interfaces are identified. It is anticipated that this review will motivate research and development to fill existing gaps for practical potassium-based full batteries so that they may be commercialized in the near future.
钾离子电池(PIBs)因其高能量密度和低成本而备受关注。因此,在材料层面上,人们投入了大量精力来开发用于钾离子电池的电极材料和电解质。本综述首先概述了高性能电极材料和电解质,然后评估了它们在实际钾离子电池进入市场方面的前景和挑战。讨论了钾离子电池在安全运行、能量密度、功率密度、循环稳定性和可持续性方面的现状,并确定了电极材料、电解质和电极 - 电解质界面的未来研究方向。预计本综述将推动研发工作,以填补实用钾基全电池的现有空白,使其在不久的将来能够实现商业化。