Zhao Zhongchen, Xu Tian, Yu Xuebin
Department of Materials Science, Fudan University, Shanghai, 200433, P. R. China.
Adv Mater. 2023 Feb;35(5):e2208096. doi: 10.1002/adma.202208096. Epub 2022 Dec 26.
Metal chalcogenide anodes with a layered structure have been regarded as potential K-based electrochemical energy storage devices with high energy density for large-scale energy storage applications. However, their development is impeded by the slow K-ion transport kinetics and poor structural stability. In this work, the energy-storage behavior is investigated first and decisively associated them with the capacity-degradation of the promising layer-structured WSe from an integrated chemical and physical point of view. Then, a single-phased WSe with pre-intercalated high K content (SP-K WSe ) is designed to overcome the capacity-degradation issue fundamentally. Theoretical calculations clarify the beneficial effect of K-ions inside the interlayer of WSe on boosting its electrochemical performance, including increasing the electronic conductivity, promoting the K-ion diffusivity, and improving the structural stability. The novel design enables the K-ions pre-intercalated WSe anode material to exhibit a high reversible specific capacity of 211 mAh g at 5 A g and superior cycling stability (89.3% capacity retention after 5000 cycles at 1 A g ). Especially, the K-ion hybrid capacitor, assembled from the anode of SP-K WSe and the cathode of porous activated carbon, delivers superior energy-density up to 175 Wh kg , high power-density as well as exceptional cycling stability.
具有层状结构的金属硫族化物阳极被认为是用于大规模储能应用的具有高能量密度的潜在钾基电化学储能装置。然而,它们的发展受到缓慢的钾离子传输动力学和较差的结构稳定性的阻碍。在这项工作中,首先研究了储能行为,并从化学和物理的综合角度将其与有前景的层状结构WSe的容量衰减决定性地联系起来。然后,设计了一种具有预嵌入高钾含量的单相WSe(SP-K WSe),从根本上克服容量衰减问题。理论计算阐明了WSe层间钾离子对提高其电化学性能的有益作用,包括提高电子电导率、促进钾离子扩散率和改善结构稳定性。这种新颖的设计使预嵌入钾离子的WSe阳极材料在5 A g时表现出211 mAh g的高可逆比容量和优异的循环稳定性(在1 A g下5000次循环后容量保持率为89.3%)。特别是,由SP-K WSe阳极和多孔活性炭阴极组装而成的钾离子混合电容器具有高达175 Wh kg的优异能量密度、高功率密度以及出色的循环稳定性。