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Theoretical investigation on the interaction of hypergolic monomethylhydrazine with 1-chloro-1,1-dinitro-2-(N-chloroamidino)ethane using DFT methods

机译:用DFT方法对1-氯-1,1-二硝基-2-(N-氯氨基)乙烷与1-氯-1,1-二硝基-2-(N-氯氨基)乙烷相互作用的理论研究

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摘要

The reaction mechanism underlying the hypergolic reaction of pure monomethylhydrazine (MMH) with 1-chloro-1,1-dinitro-2-(N-chloroamidino)ethane (CDNCE) was theoretically investigated with the density functional theory method. We identified two key atomistic level factors that affect ignition delay: (1) exothermicity for the formation of aerosol mCDNCE center dot nMMH complexes (m, n = 1, 2). The most cost-effective form was found to be 2CDNCE center dot MMH with the highest energy release (releasing energy: 23.4 kcal/mol), indicating that the oxidizer-rich form is favorable. These complexes contributed the most to heat gathering and temperature increases in the system at the beginning of all reactions. (2) For the initial reaction of MMH with CDNCE, the -SN2 mechanism was preferred. The activation barrier of the primary reactions was calculated to be 27.4 kcal/mol, which is also the rate-limiting step of this path. Because the rate of formation of -NO2 was four orders of magnitude lower than the -S(N)2 reaction at room temperature, the effect of MMH with -NO2 was less significant at temperatures below 800 K. Thus, we consider the ignition reaction of MMH with CDNCE to be well characterized.
机译:用密度泛函理论方法理解,理论上研究了用1-氯-1,1-二硝基-2-(N-氯氨基)乙烷(CDNCE)的纯单甲基肼(MMH)的高压反应的反应机制。我们确定了影响点火延迟的两个关键原子等级因素:(1)对气溶胶McDnce中心点NMMH复合物形成的放热(M,N = 1,2)。最具成本效益的形式被发现是2CDNCE中心点MMH,能量释放最高(释放能量:23.4千卡/摩尔),表明富含氧化剂的形式是有利的。这些配合物在所有反应开始时,最多的热量聚集和温度增加。 (2)对于MMH与CDNCE的初始反应,优选-SN2机制。初级反应的活化屏障计算为27.4kcal / mol,这也是该路径的速率限制步骤。因为 - NO2的形成速率低于室温下的-S(N)2反应的四个数量级,所以MMH与-NO2的效果在800k低于800k的温度下不太显着。因此,我们认为点火反应CDNCE的MMH很好。

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