枝晶(数学)
半径
分形维数
电解质
材料科学
德拜长度
曲率
电化学
相(物质)
分形
动力学
曲率半径
热力学
扩散限制聚集
化学物理
机械
化学
电极
物理
经典力学
物理化学
平均曲率
数学
离子
几何学
有机化学
计算机安全
计算机科学
数学分析
流量平均曲率
标识
DOI:10.1103/physreve.92.011301
摘要
A thin-interface phase-field model of electrochemical interfaces is developed based on Marcus kinetics for concentrated solutions, and used to simulate dendrite growth during electrodeposition of metals. The model is derived in the grand electrochemical potential to permit the interface to be widened to reach experimental length and time scales, and electroneutrality is formulated to eliminate the Debye length. Quantitative agreement is achieved with zinc Faradaic reaction kinetics, fractal growth dimension, tip velocity, and radius of curvature. Reducing the exchange current density is found to suppress the growth of dendrites, and screening electrolytes by their exchange currents is suggested as a strategy for controlling dendrite growth in batteries.
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