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Shape and size controlled fabrication of copper nanopowders from industrialelectrolytes by pulse electrodeposition

机译:通过脉冲电沉积从工业电解质中制备形状和尺寸受控的纳米铜粉

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摘要

In the present paper a novel approach to control size and shape of deposited copper particles and nano-particles from industrial electrolytes at the ultramicroelectrodes (UME) is presented. The copper nano-powders were pulse deposited on different metallic substrates from copper electrorefinery electrolytes.The SEM and electrochemical measurements showed that the morphology and structure of copperdeposit can be precisely controlled by using different substrates and kind of chronoamperometric pulses.By choosing appropriate UME metal it is possible to get either the growth of copper spherical clusters.nano-wires or smooth flat films of copper. It was found that increasing deposit potentials produces smal-ler nuclei and higher nuclei copper population density. The kinetics and mechanism of copper nucleationwas studied as well. It should be noted that very high nucleation rates and apparent cathodic currentdensities can be obtained at the ultramicroelectrodes.
机译:在本文中,提出了一种新颖的方法来控制在超微电极(UME)上从工业电解质中沉积的铜粒子和纳米粒子的尺寸和形状。铜纳米粉体是由铜精炼电解液脉冲沉积在不同的金属基底上,SEM和电化学测量表明,通过使用不同的基底和种类的计时电流脉冲可以精确地控制铜沉积的形态和结构,通过选择合适的UME金属可能会得到铜球形簇,纳米线或光滑的平坦铜膜的生长。发现增加的沉积电位会产生较小的核和较高的核铜种群密度。还研究了铜成核的动力学和机理。应当指出,在超微电极上可以获得非常高的成核速率和明显的阴极电流密度。

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