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Effect of pulse current density on gold nanograin growth in sulfite electrolyte-based electrochemical deposition

机译:脉冲电流密度对亚硫酸盐电解质电化学沉积金纳米菌生长的影响

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This study presents the effect of pulse current density on gold nanograin growth and the macro mechanical characteristic of gold films deposited in non-cyanide sulfite bath. By tuning the density of pulse current to change its corresponding overpotential, the nucleation and growth of gold grains on the cathode surface were simultaneously modulated, resulting in variations in grain size and distinct morphology. The characterization results show that, with the appropriate current density, the overpotential was well distributed to nucleation and grain growth, forming single-crystalline gold coatings with embedded defects. The orientation of gold grains was effectively controlled along <111> direction. Further the nanoindentation measurement shows the correlation of mechanical property and microtexture, revealing the grain growth kinetics in sulfite electrolyte-based electrochemical deposition.
机译:本研究介绍了脉冲电流密度对金纳米格兰生长的影响和沉积在非氰化亚硫酸盐浴中金膜的宏观力学特性。通过调节脉冲电流的密度以改变其相应的过电位,同时调节阴极表面上的金颗粒的成核和生长,导致晶粒尺寸和不同形态的变化。表征结果表明,随着适当的电流密度,过电位良好地分布到成核和晶粒生长,形成具有嵌入缺陷的单晶金涂层。沿<111的方向有效地控制金晶粒的取向。此外,纳米狭窄测量表明,机械性能和微调的相关性,揭示了基于亚硫酸盐电解质的电化学沉积中的晶粒生长动力学。

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