通过第一性原理计算获得外电场下 β-HMX 的分子结构、偶极矩和电子特性

IF 2.8 2区 化学 Q3 CHEMISTRY, PHYSICAL
Yu-Shi Liu, Wei Zeng, Fu-Sheng Liu, Zheng-Tang Liu, Wen-Shuo Yuan* and Qi-Jun Liu*, 
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引用次数: 0

摘要

为了研究外部电场对 β-HMX 炸药敏感性的影响,我们采用第一原理计算方法确定了不同电场下 β-HMX 晶体和单个 β-HMX 分子的分子结构、偶极矩和电子特性。当外部电场沿β-HMX的[100]、[010]和[001]晶向增加时,计算结果表明,触发键的键长(N1-N3/N1'-N3')增加、主Qnitro(N3,N3')值增加、最小表面静电位增加和带隙减小都会导致其稳定性降低。在这些方向中,[010] 方向的灵敏度最高,这可归因于沿[010] 方向的有效质量明显小于[001] 和[100] 方向。此外,在单个 β-HMX 分子上沿坐标系的 Y 方向施加外部电场可以发现,电场引起的强极化效应增强了 N1-N3 键的分解。此外,由于 β-HXM 晶体的周期势能,外电场对 β-HMX 晶体的极化效应远小于对单个 β-HXM 分子的极化效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Molecular Structures, Dipole Moments, and Electronic Properties of β-HMX under External Electric Field from First-Principles Calculations

Molecular Structures, Dipole Moments, and Electronic Properties of β-HMX under External Electric Field from First-Principles Calculations

Molecular Structures, Dipole Moments, and Electronic Properties of β-HMX under External Electric Field from First-Principles Calculations

In order to investigate the impact of an external electric field on the sensitivity of β-HMX explosives, we employ first-principles calculations to determine the molecular structure, dipole moment, and electronic properties of both β-HMX crystals and individual β-HMX molecules under varying electric fields. When the external electric field is increasing along the [100], [010], and [001] crystallographic directions of β-HMX, the calculation results indicate that an increase in the bond length (N1–N3/N1′–N3′) of the triggering bond, an increase in the main Qnitro (N3, N3′) value, an increase in the minimum surface electrostatic potential, and a decrease in band gap all contribute to a reduction in its stability. Among these directions, the [010] direction exhibits the highest sensitivity, which can be attributed to the significantly smaller effective mass along the [010] direction compared with the [001] and [100] directions. Moreover, the application of an external electric field along the Y direction of the coordinate system on individual β-HMX molecules reveals that the strong polarization effect induced by the electric field enhances the decomposition of the N1–N3 bonds. In addition, due to the periodic potential energy of β-HXM crystal, the polarization effect of β-HMX crystal caused by an external electric field is much smaller than that of a single β-HXM molecule.

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来源期刊
The Journal of Physical Chemistry A
The Journal of Physical Chemistry A 化学-物理:原子、分子和化学物理
CiteScore
5.20
自引率
10.30%
发文量
922
审稿时长
1.3 months
期刊介绍: The Journal of Physical Chemistry A is devoted to reporting new and original experimental and theoretical basic research of interest to physical chemists, biophysical chemists, and chemical physicists.
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