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首页> 外文期刊>Journal of molecular modeling >Theoretical investigation of the effects of the molar ratio and solvent on the formation of the pyrazole-nitroamine cocrystal explosive 3,4-dinitropyrazole (DNP)/2,4,6,8,10,12-hexanitrohexaazaisowurtzitane (CL-20)
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Theoretical investigation of the effects of the molar ratio and solvent on the formation of the pyrazole-nitroamine cocrystal explosive 3,4-dinitropyrazole (DNP)/2,4,6,8,10,12-hexanitrohexaazaisowurtzitane (CL-20)

机译:摩尔比和溶剂对吡唑 - 硝基胺爆炸3,4-二硝基吡唑(DNP)/ 2,4,4,4,4,4,4,4,4,4,4,4,4,4,4,6,8,10,12-己基甲醛(CL-20)形成的理论研究

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摘要

The effects of the molar ratio, temperature, and solvent on the formation of the cocrystal explosive DNP/CL-20 were investigated using molecular dynamics (MD) simulation. The cocrystal structure was predicted through Monte Carlo (MC) simulation and using first-principles methods. The results showed that the DNP/CL-20 cocrystal might be more stable in the molar ratio 1:1 near to 318 K, and the most probable cocrystal crystallizes in the triclinic crystal system with the space group P (1) over bar. Cocrystallization was more likely to occur in methanol and ethanol at 308 K as a result of solvent effects. The optimized structure and the reduced density gradient (RDG) of the DNP/CL-20 complex confirmed that the main driving forces for cocrystallization were a series of hydrogen bonds and van der Waals forces. Analyses of the trigger bonds, the charges on the nitro groups, the electrostatic surface potential (ESP), and the free space per molecule in the cocrystal lattice were carried out to further explore their influences on the sensitivity of CL-20. The results indicated that the DNP/CL-20 complex tended to be more stable and insensitive than pure CL-20. Moreover, an investigation of the detonation performance of the DNP/CL-20 cocrystal indicated that it possesses high power.
机译:使用分子动力学(MD)模拟研究了摩尔比,温度和溶剂对聚晶爆炸DNP / CL-20形成的影响。通过Monte Carlo(MC)仿真和使用第一原理方法来预测Cocrystal结构。结果表明,DNP / C1-20钴在摩尔比下靠近318k的摩尔比下稳定,最理说的茂密晶体在三级晶体系统中结晶,具有空间组P(1)在棒中。通过溶剂效应,在308k下,通过甲醇和乙醇更容易发生甲醇和乙醇。 DNP / CL-20复合物的优化结构和密度梯度(RDG)证实,COCRYALIZ化的主要驱动力是一系列氢键和范德瓦尔斯力。进行触发键的分析,硝基基团的电荷,静电表面电位(ESP)和Cocrystal晶格中每分子的自由空间进行,以进一步探索它们对C1-20的敏感性的影响。结果表明,DNP / CL-20复合物倾向于比纯CL-20更稳定和不敏感。此外,对DNP / CL-20 COCrystal的爆轰性能的研究表明它具有高功率。

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