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Theoretical Studies on PNMFIW by AM1 and PM3 Methods

机译:AM1和PM3方法对PNMFIW的理论研究

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摘要

AM1 and PM3 semi-empirical methods were used to conduct theoretical studies on possible polymorphs or pentanitromonoformylhexaazaisowurtzitane(PNMFIW),and,a close link between PNMFIW and Hexanitrohexaazaisowurtzitane(HNIW),especially in sensitivity,is shown.The optimized geometries of possible polymorphs of PNMFIW are similar to those of HNIW,PNMFIW in epsilon-HNIW prepared from tetraacetyldiformylhexaazaisowurtzitane is predicted to have a D-form.The average N-N bond lengths of PNMFIW computed by AM1 and PM3 methods are shorter than those of HNIW.The differences in energy and thermochemistry values between PNMFIW and HNIW are insignificant except molecular energies 255.75 kJ.mol~-1 for D-form PNMFIW and 460.36 kJ.mol~-1 for epsilon-HNIW,Based on a Mulliken population analysis of the N-N bonds,the impact sensitivities of A-,B-,C- and D-forms of PNMFIW are estimated to be lower than those of the corresponding polymorphs of HNIW.Taking into account all N-N bond lengths and overall molecule size,the shock sensitivities of all forms PNMFIW are predicted to be almost the same,and lower than those of HNIW.
机译:使用AM1和PM3半经验方法对可能的多晶型物或五硝基单甲酰基六氮杂异纤锌矿型结构烷烃(PNMFIW)进行了理论研究,并且显示了PNMFIW和六硝基六氮杂氮杂纤锌矿型结构烷烃(HNIW)之间的紧密联系,特别是在灵敏度方面。由四乙酰基二甲酰基六氮杂异纤锌矿型结构烷烃制备的ε-HNIW中的PNMFIW与HNIW相似,PNMFIW被预测为D型.AM1和PM3方法计算得到的PNMFIW的平均NN键长度比HNIW短。能量和热化学的差异除D型PNMFIW的分子能为255.75 kJ.mol〜-1和ε-HNIW的分子能为460.36 kJ.mol〜-1以外,PNMFIW和HNIW之间的值无关紧要,基于NN键的Mulliken种群分析,估计PNMFIW的A,B,C和D形式低于HNIW相应多晶型的形式。考虑到所有NN键长和总分子在尺寸上,所有形式的PNMFIW的冲击敏感性预计几乎相同,并且低于HNIW。

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