Liu Yu-Shi, Zeng Wei, Liu Fu-Sheng, Liu Zheng-Tang, Yuan Wen-Shuo, Liu Qi-Jun
Bond and Band Engineering Group, School of Physical Science and Technology, Southwest Jiaotong University, Chengdu 610031, People's Republic of China.
Teaching and Research Group of Chemistry, School of Pharmacy, Chengdu University of Traditional Chinese Medicine, Chengdu 610075, People's Republic of China.
J Phys Chem A. 2024 May 30;128(21):4189-4198. doi: 10.1021/acs.jpca.4c00375. Epub 2024 May 15.
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 (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 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.
为了研究外部电场对β-HMX炸药敏感度的影响,我们采用第一性原理计算来确定在不同电场下β-HMX晶体和单个β-HMX分子的分子结构、偶极矩和电子性质。当外部电场沿β-HMX的[100]、[010]和[001]晶向增加时,计算结果表明,引发键的键长(N1-N3/N1'-N3')增加、主值(N3,N3')增加、最小表面静电势增加以及带隙减小都导致其稳定性降低。在这些方向中,[010]方向表现出最高的敏感度,这可归因于沿[010]方向的有效质量比[001]和[100]方向显著更小。此外,在单个β-HMX分子上沿坐标系方向施加外部电场表明,电场诱导的强极化效应增强了N1-N3键的分解。另外,由于β-HXM晶体的周期势能,外部电场引起的β-HMX晶体的极化效应远小于单个β-HXM分子的极化效应。