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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Spontaneous formation of periodic nanostructured film by electrodeposition: Experimental observations and modeling
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Spontaneous formation of periodic nanostructured film by electrodeposition: Experimental observations and modeling

机译:电沉积自发形成周期性纳米结构膜的实验观察与建模

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摘要

In this paper we report the spontaneous formation of a nanostructured film by electrodeposition from an ultrathin electrolyte layer of CuSO4. The film consists of straight periodic ditches and ridges, which corresponds to the alternating deposition of nanocrystallites of copper and copper plus cuprous oxide, respectively. The periodicity on the film may vary from 100 nm to a few hundred nanometers depending on the experimental conditions. In the formation of the periodically nanostructured film, oscillating voltage/current has been observed across the electrodes, and the frequency depends on the pH of the electrolyte and the applied current/voltage. A model based on the coupling of [Cu2+] and [H+] in the electrodeposition is proposed to describe the oscillatory phenomena in our system. The calculated results are in agreement with the experimental observations.
机译:在本文中,我们报告了通过电沉积CuSO4超薄电解质层自发形成纳米结构膜的过程。该膜由直的周期性沟槽和凸脊组成,分别对应于铜和铜加氧化亚铜的纳米微晶的交替沉积。膜上的周期性取决于实验条件,范围从100 nm到几百纳米。在形成周期性的纳米结构的膜时,已经在电极上观察到振荡的电压/电流,并且频率取决于电解质的pH和所施加的电流/电压。提出了基于电沉积中[Cu2 +]和[H +]耦合的模型来描述系统中的振荡现象。计算结果与实验结果一致。

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