化学
电极
电化学
纳米颗粒
电化学电位
标准电极电位
电极电位
碰撞
分布(数学)
化学物理
纳米技术
材料科学
物理化学
计算机科学
数学分析
计算机安全
数学
作者
Si‐Min Lu,Jianfu Chen,Yue‐Yi Peng,Wei Ma,Hui Ma,Haifeng Wang,P. Hu,Yi‐Tao Long
摘要
The potential distribution at the electrode interface is a core factor in electrochemistry, and it is usually treated by the classic Gouy–Chapman–Stern (G–C–S) model. Yet the G–C–S model is not applicable to nanosized particles collision electrochemistry as it describes steady-state electrode potential distribution. Additionally, the effect of single nanoparticles (NPs) on potential should not be neglected because the size of a NP is comparable to that of an electrode. Herein, a theoretical model termed as Metal-Solution-Metal Nanoparticle (M-S-MNP) is proposed to reveal the dynamic electrode potential distribution at the single-nanoparticle level. An explicit equation is provided to describe the size/distance-dependent potential distribution in single NPs stochastic collision electrochemistry, showing the potential distribution is influenced by the NPs. Agreement between experiments and simulations indicates the potential roles of the M-S-MNP model in understanding the charge transfer process at the nanoscale.
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