分子动力学
化学
均方位移
径向分布函数
熔点
星团(航天器)
扩散
热力学
相变
化学物理
计算化学
物理
计算机科学
有机化学
程序设计语言
作者
Tshegofatso M. Phaahla,Alexey A. Sokol,C. Richard A. Catlow,Scott M. Woodley,Phuti E. Ngoepe,Hasani Chauke
标识
DOI:10.17159/0379-4350/2021/v74a4
摘要
ABSTRACT Molecular dynamics simulations were performed to investigate the stability with respect to increasing the simulated temperature from 300 to 2400 K of an isolated cluster composed of 32 titanium atoms. The interatomic interactions were modelled using Gupta potentials as implemented within the classical molecular dynamics simulation software DL_POLY. The radial distribution functions (RDF), diffusion coefficient, and density profiles were examined to study the structural changes as a function of temperature. It was found that the Ti32 nanocluster exhibits temperature structural transition. The icosahedron and pentagonal bi-pyramid structures were found to be the most dominant building block fragments. Deformation of the nanocluster was also measured by diffusion coefficient, and it was found that the Ti32 are mobile above the bulk melting point. The phase transitions from solid to liquid have been identified by a simple jump in the total energy curve, with the predicted melting temperature near the bulk melting point (1941.15 K). As expected, the RDF's and density profile peaks decrease with increasing temperature. Keywords: Molecular dynamics, titanium cluster, radial distribution functions, diffusion coefficient, mean square displacement.
科研通智能强力驱动
Strongly Powered by AbleSci AI