Hang Gui-Yun, Wang Jin-Tao, Xue Hai-Jian, Yu Wen-Li, Wang Tao, Shen Hui-Ming
Xi'an Research Institute of High-Tech, Xi'an, 710025, Shaanxi, China.
J Mol Model. 2024 Jun 14;30(7):210. doi: 10.1007/s00894-024-06018-8.
To estimate the influence of temperature on properties of 2,4,6,8,10,12-hexanitro- 2,4,6,8,10,12-hexaazaisowurtzitane/1,4-dinitroimidazole (CL-20/1,4-DNI) cocrystal explosive, the supercell crystal of CL-20/1,4-DNI cocrystal model was established. The mechanical properties, sensitivity, and stability of cocrystal model under different temperatures (T = 225 K, 250 K, 275 K, 300 K, 325 K, 350 K) were predicted. Results show that mechanical parameters, including bulk modulus, tensile modulus and shear modulus are the lowest when temperature is 300 K, while Cauchy pressure is the highest, indicating that CL-20/1,4-DNI cocrystal model has better mechanical properties at 300 K. Cohesive energy density (CED) and its components energies decrease monotonically with the increase of temperature, illustrating that the CL-20 and 1,4-DNI molecules are activated and the safety of cocrystal explosive is worsened with the increase of temperature. Cocrystal model has relatively higher binding energy when the temperature is 300 K, implying that the CL-20/1,4-DNI cocrystal explosive is more stable under this condition.
The CL-20/1,4-DNI cocrystal model was optimized and the properties were predicted through molecular dynamics (MD) method. The MD simulation was performed with COMPASS force field and the ensemble was set as NPT, external pressure was set as 0.0001 GPa.
为评估温度对2,4,6,8,10,12-六硝基-2,4,6,8,10,12-六氮杂异伍兹烷/1,4-二硝基咪唑(CL-20/1,4-DNI)共晶炸药性能的影响,建立了CL-20/1,4-DNI共晶模型的超晶胞晶体。预测了共晶模型在不同温度(T = 225 K、250 K、275 K、300 K、325 K、350 K)下的力学性能、感度和稳定性。结果表明,当温度为300 K时,包括体积模量、拉伸模量和剪切模量在内的力学参数最低,而柯西压力最高,表明CL-20/1,4-DNI共晶模型在300 K时具有更好的力学性能。内聚能密度(CED)及其组成能量随温度升高单调降低,说明随着温度升高,CL-20和1,4-DNI分子被激活,共晶炸药的安全性变差。当温度为300 K时,共晶模型具有相对较高的结合能,这意味着CL-20/1,4-DNI共晶炸药在该条件下更稳定。
采用分子动力学(MD)方法对CL-20/1,4-DNI共晶模型进行优化并预测其性能。MD模拟采用COMPASS力场,系综设置为NPT,外部压力设置为0.0001 GPa。