电解质
电极
离子
化学
插层(化学)
无机化学
化学物理
扩散
热力学
物理化学
物理
有机化学
作者
Fei Wang,Wei Sun,Zulipiya Shadike,Enyuan Hu,Xiao Ji,Tao Gao,Xiao‐Qing Yang,Kang Xu,Chunsheng Wang
标识
DOI:10.1002/anie.201806748
摘要
Abstract The effect of H 2 O in electrolytes and in electrode lattices on the thermodynamics and kinetics of reversible multivalent‐ion intercalation chemistry based on a model platform of layered VOPO 4 has been investigated. The presence of H 2 O at the electrolyte/electrode interface plays a key role in assisting Zn 2+ diffusion from electrolyte to the surface, while H 2 O in the lattice structure alters the working potential. More importantly, a dynamic equilibrium between bulk electrode and electrolyte is eventually reached for H 2 O transport during the charge/discharge cycles, with the water activity serving as the key parameter determining the direction of water movement and the cycling stability.
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