Yu Zhihong, Song Xiaolan, Wang Yi, Cheng Zhipeng, An Chongwei
School of Environment and Safety Engineering, North University of China, Taiyuan, 030051, China.
School of Materials Science and Engineering, North University of China, Taiyuan, 030051, China.
J Mol Model. 2023 Oct 17;29(11):345. doi: 10.1007/s00894-023-05743-w.
The study of CL-20 co-crystal has always been a focal point within the field of energetic material modification. In this study, we employed a combination of density functional theory and molecular dynamics simulations to investigate the properties of hexanitrohexaazaisowurtzitane (CL-20)/3-amino-5-nitro-1,2,4-triazole (ANTA) with different molar ratios ranging from 4:1 to 1:4. Additionally, EXPLO-5 software utilized to predict the detonation properties and products of pure CL-20, ANTA, and CL-20/ANTA systems. The results revealed that there was an interaction between CL-20 and ANTA molecules, which had the potential to form a co-crystal. The most likely molar ratio for co-crystal formation was 1:1, and the main driving forces for co-crystal formation were electrostatic force, dispersion force, and van der Waals force. The co-crystal explosive exhibited moderate sensitivity and excellent mechanical properties. Furthermore, the co-crystal detonation performance at a molar ratio of 1:1 was between that of CL-20 and ANTA, representing a new type of insensitive high-energy material.
The properties of CL-20/ANTA co-crystal were predicted by molecular dynamics (MD) method under Materials Studio software. For the whole MD simulations, set the temperature at 298 K, and the pressure was 0.0001 GPa. Conducted MD simulation under the NPT ensemble for a total simulation duration of 1 ns. The first 0.5 ns was used for thermodynamic equilibrium, and the last 0.5 ns was used for statistical calculation and analysis. Sampling was recorded every 10 fs during the calculation.
六硝基六氮杂异伍兹烷(CL-20)共晶体的研究一直是含能材料改性领域的一个焦点。在本研究中,我们采用密度泛函理论和分子动力学模拟相结合的方法,研究了摩尔比从4:1到1:4的六硝基六氮杂异伍兹烷(CL-20)/3-氨基-5-硝基-1,2,4-三唑(ANTA)的性质。此外,利用EXPLO-5软件预测了纯CL-20、ANTA以及CL-20/ANTA体系的爆轰性能和产物。结果表明,CL-20与ANTA分子之间存在相互作用,有可能形成共晶体。形成共晶体最可能的摩尔比为1:1,共晶体形成的主要驱动力是静电力、色散力和范德华力。该共晶炸药表现出适度的感度和优异的力学性能。此外,摩尔比为1:1时的共晶爆轰性能介于CL-20和ANTA之间,代表了一种新型的钝感高能材料。
在Materials Studio软件下,采用分子动力学(MD)方法预测CL-20/ANTA共晶体的性质。对于整个MD模拟,将温度设置为298 K,压力为0.0001 GPa。在NPT系综下进行MD模拟,总模拟时长为1 ns。前0.5 ns用于热力学平衡,后0.5 ns用于统计计算和分析。计算过程中每10 fs记录一次采样。