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First-Principles Study of High-Pressure Behavior of Solid β-HMX
被引:54
|作者:
Cui, Hong-Ling
[1
,2
]
Ji, Guang-Fu
[1
]
Chen, Xiang-Rong
[2
,3
]
Zhu, Wei-Hua
[4
,5
]
Zhao, Feng
[1
]
Wen, Ya
[1
]
Wei, Dong-Qing
[6
]
机构:
[1] Chinese Acad Engn Sci, Natl Key Lab Shock Wave & Detonat Phys, Inst Fluid Phys, Mianyang 621900, Peoples R China
[2] Sichuan Univ, Inst Atom & Mol Phys, Chengdu 610064, Peoples R China
[3] Chinese Acad Sci, Int Ctr Mat Phys, Shenyang 110016, Peoples R China
[4] Nanjing Univ Sci & Technol, Dept Chem, Nanjing 210094, Peoples R China
[5] Nanjing Univ Sci & Technol, Inst Computat Mol & Mat Sci, Nanjing 210094, Peoples R China
[6] Beijing Inst Technol, State Key Lab Explos Sci & Technol, Beijing 00081, Peoples R China
来源:
基金:
美国国家科学基金会;
关键词:
TOTAL-ENERGY CALCULATIONS;
EQUATION-OF-STATE;
AB-INITIO;
MOLECULAR-DYNAMICS;
HYDROSTATIC COMPRESSION;
ELECTRONIC-STRUCTURE;
CRYSTAL STRUCTURE;
PHASE-TRANSITION;
DELTA-PHASE;
OCTAHYDRO-1,3,5,7-TETRANITRO-1,3,5,7-TETRAZOCINE;
D O I:
10.1021/jp9090969
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
学科分类号:
070304 ;
081704 ;
摘要:
A first-principles plane-wave method with an ultrasoft pseudopotential scheme in the framework of the generalized gradient approximation (GGA) was used to calculate the lattice parameters, bulk modulus and its pressure derivative, energy band structures, density of states, phonon density of states, thermodynamic properties, and absorption spectra of solid beta-octahydro-1,3,5,7-tetranitro-1,3,5,7-tetrazocine (beta-HMX). The current Study is focused on the thermodynamics and electronic properties that were not reported previously. The bulk modulus and its pressure derivative are also consistent with experimental data and other theoretical results. From the results for the band gaps and density of states, it was found that beta-HMX has the tendency to become a semiconductor with increasing pressure. As the temperature increases, the heat capacity, enthalpy, product of temperature and entropy, and Debye temperature all increase, whereas the free energy decreases. The optical absorption coefficients shift to higher frequencies/energics with increasing pressure. The present Study leads to a better understanding of how energetic materials respond to compression.
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页码:1082 / 1092
页数:11
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