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钴铜纳米颗粒在退火过程中的结构变化研究。

Investigation on the structural variation of Co-Cu nanoparticles during the annealing process.

作者信息

Ju Shin-Pon, Lo Yu-Chieh, Sun Shih-Jye, Chang Jee-Gong

机构信息

Department of Mechanical and Electro-Mechanical Engineering, Center for Nanoscience and Nanotechnology, National Sun Yat-Sen University, Kaohsiung 804, Taiwan, Republic of China.

出版信息

J Phys Chem B. 2005 Nov 10;109(44):20805-9. doi: 10.1021/jp052803k.

Abstract

This study uses molecular dynamics simulations to investigate the crystalline process of Co-Cu nanoparticles of high and low Co concentrations (5 and 25%) during the annealing process. The modified many-body tight-binding potential involving magnetic contribution is adopted to accurately model the Cu-Cu, Co-Co, and Co-Cu pair interactions. The Co-Co bond length increases, while the Co-Cu bond length decreases as the temperature gradually drops from 2000 K to the upper melting point. During that process, the Cu-Cu bond length remains constant and the value of the first peak of the radial distribution function (RDF) increases, which indicates that Cu atoms increase their short-range order by mutual rearrangement. At temperatures lower than the upper melting point, the bond length of each pair decreases while the value of the first peak increases as the temperature is continuously reduced. Because the kinetic energy of an individual atom is not enough for rearrangement, the variations of bond length and the first RDF peak can be attributed to the shrinking effect.

摘要

本研究采用分子动力学模拟方法,研究了高钴浓度(25%)和低钴浓度(5%)的钴铜纳米颗粒在退火过程中的结晶过程。采用包含磁贡献的改进多体紧束缚势,精确模拟铜-铜、钴-钴和钴-铜对相互作用。当温度从2000 K逐渐降至熔点上限时,钴-钴键长增加,而钴-铜键长减小。在此过程中,铜-铜键长保持不变,径向分布函数(RDF)第一个峰的值增加,这表明铜原子通过相互重排增加了其短程序。在低于熔点上限的温度下,随着温度持续降低,各对的键长减小,而第一个RDF峰的值增加。由于单个原子的动能不足以进行重排,键长和第一个RDF峰的变化可归因于收缩效应。

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