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通过理论计算和实验研究溶剂对CL-20与HMX共结晶的影响。

Study on the effect of solvent on cocrystallization of CL-20 and HMX through theoretical calculations and experiments.

作者信息

Zhao Xitong, Li Jizhen, Quan Shuxin, Fu Xiaolong, Meng Saiqin, Jiang Liping, Fan Xuezhong

机构信息

Xi'an Modern Chemistry Research Institute Xi'an 710065 Shaanxi China

Qingyang Chemical Industry Corporation Liaoyang 111001 Liaoning China.

出版信息

RSC Adv. 2022 Aug 1;12(33):21255-21263. doi: 10.1039/d2ra03730k. eCollection 2022 Jul 21.

Abstract

Cocrystallization is a helpful method for explosives design. However, lack of understanding of the cocrystallization mechanism leads to inefficiency in cocrystal preparation. Therefore, studying the effects of solvent on cocrystal is of great importance for the efficient application of 2,4,6,8,10,12-hexanitrohexaazaisowurtzitane (CL-20). In this paper, the effect of solvent on cocrystallization is investigated by the CL-20/HMX cocrystal/solvent cluster model, the CL-20/HMX/solvent mixture model, the CL-20/HMX cocrystal/solvent interface model combined with quantum chemistry and molecular dynamic methods. The authors find that the hydrogen bond between CL-20 and 1,3,5,7-tetranitro-1,3,5,7-tetrazocane (HMX) is the strongest and the binding energy of cocrystal and solvent molecules is the weakest in ethyl acetate (EA) solvent, indicating that CL-20 and HMX tend to be combined together and there is less hindrance by solvent molecules. Analysis of the CL-20/HMX/solvent mixture and mass density distribution studies show that the solvent effect has a great influence on the crystal faces and the cocrystallization rate of CL-20 and HMX is the highest in EA solvent. The XRD and SEM characterization results are consistent with the theoretical calculations. The present work on the effects of solvent on CL-20/HMX cocrystals is beneficial for understanding the mechanism of the growth of energetic cocrystal materials. It is helpful in selecting more suitable theoretical and experimental conditions and makes access to excellent cocrystals more efficient.

摘要

共结晶是炸药设计的一种有用方法。然而,由于对共结晶机理缺乏了解,导致共晶体制备效率低下。因此,研究溶剂对共晶的影响对于2,4,6,8,10,12-六硝基六氮杂异伍兹烷(CL-20)的高效应用具有重要意义。本文结合量子化学和分子动力学方法,通过CL-20/HMX共晶/溶剂团簇模型、CL-20/HMX/溶剂混合物模型、CL-20/HMX共晶/溶剂界面模型研究了溶剂对共结晶的影响。作者发现,在乙酸乙酯(EA)溶剂中,CL-20与1,3,5,7-四硝基-1,3,5,7-四氮杂环辛烷(HMX)之间的氢键最强,共晶与溶剂分子的结合能最弱,这表明CL-20和HMX倾向于结合在一起,且溶剂分子的阻碍较小。对CL-20/HMX/溶剂混合物的分析和质量密度分布研究表明,溶剂效应对晶面有很大影响,且CL-20和HMX在EA溶剂中的共结晶速率最高。XRD和SEM表征结果与理论计算结果一致。目前关于溶剂对CL-20/HMX共晶影响的研究工作有助于理解含能共晶材料生长的机理。它有助于选择更合适的理论和实验条件,并使获得优异共晶的效率更高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab23/9341422/9e28311a0f2b/d2ra03730k-f1.jpg

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