塔特布
爆炸物
休克(循环)
材料科学
分子动力学
化学物理
分子间力
灵敏度(控制系统)
高能材料
从头算
热力学
冲击响应谱
化学
计算化学
分子
有机化学
物理
经典力学
工程类
内科学
加速度
起爆
医学
电子工程
作者
Lei Zhang,Yi Yu,Meizhen Xiang
出处
期刊:Nanomaterials
[Multidisciplinary Digital Publishing Institute]
日期:2019-09-03
卷期号:9 (9): 1251-1251
被引量:25
摘要
Understanding the reaction initiation of energetic single crystals under external stimuli is a long-term challenge in the field of high energy density materials. Herewith, we developed an abinitio molecular dynamics method based on the multiscale shock technique (MSST) and reported the reaction initiation mechanism by performing large-scale simulations for the sensitive explosive benzotrifuroxan (BTF), insensitive explosive triaminotrinitrobenzene (TATB), four polymorphs of hexanitrohexaazaisowurtzitane (CL-20) pristine crystals and five novel CL-20 cocrystals. A theoretical indicator, tinitiation, the delay of decomposition reaction under shock, was proposed to characterize the shock sensitivity of energetic single crystal, which was proved to be reliable and satisfactorily consistent with experiments. We found that it was the coupling of heat and pressure that drove the shock reaction, wherein the vibrational spectra, the specific heat capacity, as well as the strength of the trigger bonds were the determinants of the shock sensitivity. The intermolecular hydrogen bonds were found to effectively buffer the system from heating, thereby delaying the decomposition reaction and reducing the shock sensitivity of the energetic single crystal. Theoretical rules for synthesizing novel energetic materials with low shock sensitivity were given. Our work is expected to provide a useful reference for the understanding, certifying and adjusting of the shock sensitivity of novel energetic materials.
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