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首页> 外文期刊>Journal of the Serbian Chemical Society >Metal powder electrolysis: The shape of powder particles as a function of the exchange current density and overpotential for hydrogen evolution reaction
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Metal powder electrolysis: The shape of powder particles as a function of the exchange current density and overpotential for hydrogen evolution reaction

机译:金属粉末电解:粉末颗粒的形状作为交换电流密度和氢进化反应的过电位的函数

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摘要

The short survey of the dependence of the shape of electrolytically produced powder particles on the exchange current density for metal deposition and overpotential for hydrogen evolution reaction is presented. The decrease of the exchange current density leads to a branching of dendrites and their transformation from needle-like and the two-dimensional (2D) fern-like to the three-dimensional (3D) pine-like shapes. Vigorous hydrogen evolution inhibits the dendritic growth leading to a formation of cauliflower-like and the spongy-like particles. The very thin needles were obtained by molten salt electrolysis. Mechanisms responsible for the formation of both the dendritic (the general theory of disperse deposits formation) and the cauliflower-like and the spongy-like particles (the concept of ?effective overpotential”) were also mentioned.
机译:介绍了电解产生的粉末颗粒形状对金属沉积的交换电流密度的依赖性的依赖性,并进行了氢进化反应的过电流。交换电流密度的降低导致树枝状物的分支及其从针状和二维(2D)蕨等的转化为三维(3D)松树状形状。剧烈的氢进化抑制树突状生长,导致花椰菜状和海绵状颗粒的形成。通过熔盐电解获得非常薄的针头。还提到了负责形成树突状(分散沉积物的一般理论)和花椰菜样和海绵状颗粒(α有效过电位“)的机制。

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