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首页> 外文期刊>Nanotechnology >Additive printing of pure nanocrystalline nickel thin films using room environment electroplating
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Additive printing of pure nanocrystalline nickel thin films using room environment electroplating

机译:使用室内环境电镀的纯纳米晶镍薄膜添加剂印刷

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摘要

Given its high temperature stability, oxidation-, corrosion- and wear-resistance, and ferromagnetic properties, Nickel (Ni) is one of the most technologically important metals. This article reports that pure and nanocrystalline (Ni) films with excellent mechanical and magnetic properties can be additively printed at room environment without any high-temperature post-processing. The printing process is based on a nozzle-based electrochemical deposition from the classical Watt's bath. The printed Ni film showed a preferred (220) and (111) texture based on x-ray diffraction spectra. The printed Ni film had close to bulk electrical conductivity; its indentation elastic modulus and hardness was measured to be 203 +/- 6.7 GPa and 6.27 +/- 0.34 GPa, respectively. Magnetoresistance, magnetic hysteresis loop, and magnetic domain imaging showed promising results of the printed Ni for functional applications.
机译:鉴于其高温稳定性,氧化,腐蚀和耐磨性,镍(Ni)是最具技术上重要的金属之一。 本文报告说,在室内环境下,可以在没有任何高温后加工的室内环境中含有优异的机械和磁性的纯和纳米晶(Ni)薄膜。 印刷过程基于古典瓦特浴的喷嘴基电化学沉积。 印刷的Ni膜显示基于X射线衍射光谱的优选(220)和(111)纹理。 印刷的Ni薄膜具有接近散装电导率; 其压痕弹性模量和硬度分别测量为203 +/- 6.7GPa和6.27 +/- 0.34GPa。 磁阻,磁滞回路和磁域成像显示出用于功能性应用的印刷NI的有希望的结果。

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