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作 者:万兴元 王一雍[1] 金辉[1] 宁哲[1] 邵品 Wan Xingyuan;Wang Yiyong;Jin Hui;Ning Zhe;Shao Pin(University of Science and Technology Liaoning,Anshan 114051,China)
机构地区:[1]辽宁科技大学
出 处:《稀有金属材料与工程》2019年第12期3969-3977,共9页Rare Metal Materials and Engineering
基 金:国家自然科学基金(51674141);辽宁省教育厅专项计划(2016TSPY02)
摘 要:利用聚乙烯吡咯烷酮(PVP)调控亚微米级铜晶体的形貌,借助SEM、XRD及激光粒度分析仪对铜晶体微观性能进行了表征,采用Materials Studio软件结合Gibbs-Wulff定律(晶体生长平衡理论)推测PVP分子在Cu各晶面的吸附行为及铜晶体的形貌变化规律,研究结果表明:经PVP改性后,铜晶体由截角八面体转变为近球形。PVP在铜各晶面主要发生化学吸附,吸附强弱顺序为:(111)>(200)>(220)。PVP对亚微米级铜晶体的形貌控制机制在于PVP与Cu形成具有共价性的不稳定配合物,抑制了(111)、(200)和(220)晶面的生长,显露了更多的晶面,导致了Cu晶体更趋近于球形。The morphology of submicron copper crystals was controlled by polyvinylpyrrolidone(PVP). The microscopic properties of copper crystals were characterized by SEM, XRD and laser particle size analyzer. The adsorption behavior of PVP molecules on the crystal faces of Cu and the morphology of copper crystals were speculated using the Materials Studio combined with Gibbs-Wulff’s law(crystal growth balance theory). The results show that the copper crystals transform from truncated octahedron to nearly spherical after PVP modification. PVP mainly undergoes chemisorption on the crystal faces of copper. The order of adsorption is:(111)>(200)>(220). The morphology control mechanism of PVP on submicron copper crystals is that PVP forms a covalently unstable coordinating chelate with Cu, which inhibits the growth of(111),(200) and(220) crystal planes, and reveals more crystal planes, and thus the Cu crystals become closer to a sphere.
关 键 词:PVP Gibbs-Wulff定律 化学吸附 吸附能 表面能
分 类 号:TF123.2^+3[冶金工程—粉末冶金]
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