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Influence of Magnetic Agitation and Bubble Stirring on Electrodeposited Copper in an Acidic CuSO4?Solution

机译:磁性搅拌和气泡搅拌对酸性CUSO4中电沉积铜的影响?溶液

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Electrochemical reduction is an effective method to transform Cu2+ ions into metallic Cu in aqueous solutions. Herein, magnetic agitation and flowing bubbles were introduced into the electrowinning process of Cu2+ ions in a CuSO4-H2SO4 electrolyte. The influence of agitation and micron-sized bubbles on the nucleation and growth of Cu electrodeposits was systemically investigated. Additionally, the composition and microstructure of the Cu deposits were analyzed. The migration of Cu2+ ions towards the cathode was effectively accelerated by agitation and bubbles. Cu dendrites can be basically eliminated in the product. Primary nucleation and the subsequent growth of the Cu electrodeposits were effectively promoted, while secondary nucleation of Cu was suppressed. Finally, compact and homogeneous Cu electrodeposits were prepared by employing agitation and flowing bubbles to assist the electrowinning of Cu ions.
机译:电化学还原是将Cu2 +离子转化为水溶液中金属Cu的有效方法。 这里,将磁性搅拌和流动的气泡引入CUSO4-H2SO4电解质中Cu 2 +离子的电烙过程中。 系统地研究了搅拌和微米尺寸气泡对Cu电沉积物成核和生长的影响。 另外,分析了Cu沉积物的组成和微观结构。 通过搅拌和气泡有效地加速Cu2 +离子朝向阴极的迁移。 Cu Dendrites可以在产品中基本上消除。 有效地促进了初级成核和随后的Cu电沉积物的生长,而Cu的次级成核被抑制。 最后,通过采用搅拌和流动气泡来制备紧凑且均匀的Cu电沉积,以帮助电解丁离子。

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