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One-step fastest method of nanocrystalline CuAlS2 chalcopyrite synthesis, and its nanostructure characterization

机译:一步法最快的纳米晶CuAlS 2 黄铜矿合成方法及其纳米结构表征

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摘要

Nanocrystalline CuAlS2 chalcopyrite has been mechanosynthesized at room temperature for the first time by ball milling the stoichiometric mixture of elemental of Cu, Al, and S powders under argon atmosphere. Initially, the CuAlS2 phase is formed by solid state reaction of elemental powders within 15 min of milling and in the course of milling crystallite size decreases slowly to ~5 nm within 10 h of milling. Microstructure characterization and phase transformation kinetics of the elemental powders toward the chalcopyrite phase formation has been made by employing the Rietveld analysis using X-ray diffraction data of unmilled and ball-milled samples.
机译:纳米晶态的CuAlS 2 黄铜矿在室温下首次通过在氩气气氛下球磨Cu,Al和S元素粉末的化学计量混合物进行了机械合成。最初,CuAlS 2 相是在研磨的15分钟内通过元素粉末的固态反应形成的,在研磨的过程中,晶粒的尺寸在研磨的10小时内缓慢减小至〜5 nm。利用未研磨和球磨样品的X射线衍射数据,通过Rietveld分析,对元素粉末向黄铜矿相形成进行了微观结构表征和相变动力学。

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