Jia Xiumei, Xin Zhendong, Fu Yizheng, Duan Hongji
School of Innovation and Entrepreneurship, North University of China, Taiyuan 030051, China.
Department of Admission and Employment, North University of China, Taiyuan 030051, China.
Molecules. 2024 Oct 11;29(20):4819. doi: 10.3390/molecules29204819.
Polymorphic transformation is important in chemical industries, in particular, in those involving explosive molecular crystals. However, due to simulating challenges in the rare event method and collective variables, understanding the transformation mechanism of molecular crystals with a complex structure at the molecular level is poor. In this work, with the constructed order parameters (OPs) and K-means clustering algorithm, the potential of mean force (PMF) along the minimum free-energy path connecting -HMX and -HMX was calculated by the finite temperature string method in the collective variables (SMCV), the free-energy profile and nucleation kinetics were obtained by Markovian milestoning with Voronoi tessellations, and the temperature effect on nucleation was also clarified. The barriers of transformation were affected by the finite-size effects. The configuration with the lower potential barrier in the PMF corresponded to the critical nucleus. The time and free-energy barrier of the polymorphic transformation were reduced as the temperature increased, which was explained by the pre-exponential factor and nucleation rate. Thus, the polymorphic transformation of HMX could be controlled by the temperatures, as is consistent with previous experimental results. Finally, the HMX polymorph dependency of the impact sensitivity was discussed. This work provides an effective way to reveal the polymorphic transformation of the molecular crystal with a cyclic molecular structure, and further to prepare the desired explosive by controlling the transformation temperature.
多晶型转变在化学工业中很重要,特别是在那些涉及易爆分子晶体的行业。然而,由于在稀有事件方法和集体变量方面的模拟挑战,在分子水平上理解具有复杂结构的分子晶体的转变机制还很不足。在这项工作中,利用构建的序参量(OPs)和K均值聚类算法,通过集体变量中的有限温度弦方法(SMCV)计算了沿着连接-HMX和-HMX的最小自由能路径的平均力势(PMF),通过具有Voronoi镶嵌的马尔可夫里程碑法获得了自由能分布和成核动力学,并且还阐明了温度对成核的影响。转变的势垒受到有限尺寸效应的影响。PMF中具有较低势垒的构型对应于临界核。随着温度升高,多晶型转变的时间和自由能势垒降低,这可以通过指数前因子和成核速率来解释。因此,HMX的多晶型转变可以通过温度来控制,这与先前的实验结果一致。最后,讨论了HMX多晶型对撞击感度的依赖性。这项工作提供了一种有效的方法来揭示具有环状分子结构的分子晶体的多晶型转变,并进一步通过控制转变温度来制备所需的炸药。