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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Ab initio molecular dynamics study on the initial chemical events in nitramines: Thermal decomposition of CL-20
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Ab initio molecular dynamics study on the initial chemical events in nitramines: Thermal decomposition of CL-20

机译:从头开始进行亚胺中化学反应的分子动力学研究:CL-20的热分解

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摘要

CL-20 (2,4,6,8,10,12-hexanitro-214,6,8,10,12-hexaazaisowurtzitane or HNIW) is a high-energy nitramine explosive. To improve atomistic understanding of the thermal decomposition of CL-20 gas and solid phases, we performed a series of A initio molecular dynamics simulations. We found that during unimolecular decomposition, unlike other nitramines (e.g., RDX, HMX), CL-20 has only one distinct initial reaction channel-homolysis of the N-NO2 bond. We did not observe any HONO elimination reaction during unimolecular decomposition, whereas the ring-breaking reaction was followed by NO2 fission. Therefore, in spite of limited sampling, that provides a mostly qualitative picture, we proposed here a scheme of unimolecular decomposition of CL-20. The averaged product population over all trajectories was estimated at four HCN, two to four NO2, two to four NO, one CO, and one OH molecule per one CL-20 molecule. Our simulations provide a detailed description of the chemical processes in the initial stages of thermal decomposition of condensed CL-20, allowing elucidation of key features of such processes as composition of primary reaction products, reaction timing, and Arrhenius behavior of the system. The primary reactions leading to NO2, NO, N2O, and N-2 occur at very early stages. We also estimated potential activation barriers for the formation of NO2, which essentially determines overall decomposition kinetics and effective rate constants for NO2 and N-2. The calculated solid-phase decomposition pathways correlate with available condensed-phase experimental data.
机译:CL-20(2,4,6,8,10,12-六硝基-214,6,8,10,12-六氮杂异纤锌矿型结构烷烃或HNIW)是一种高能硝胺炸药。为了提高对CL-20气相和固相热分解的原子学认识,我们进行了一系列的A初始分子动力学模拟。我们发现,在单分子分解过程中,与其他硝胺(例如RDX,HMX)不同,CL-20仅具有一个独特的初始反应通道-N-NO2键的均溶作用。我们在单分子分解过程中没有观察到任何HONO消除反应,而开环反应之后是NO2裂变。因此,尽管采样有限,但可以提供大部分定性的图像,我们在这里提出了CL-20的单分子分解方案。所有轨迹上的平均产物总数估计为每1个CL-20分子有4个HCN,2至4个NO2、2至4个NO,1个CO和1个OH分子。我们的模拟提供了冷凝CL-20热分解初始阶段的化学过程的详细描述,从而阐明了这些过程的关键特征,例如主要反应产物的组成,反应时间和系统的Arrhenius行为。导致NO2,NO,N2O和N-2的主要反应发生在非常早期的阶段。我们还估算了NO2形成的潜在活化障碍,这实际上决定了NO2和N-2的整体分解动力学和有效速率常数。计算出的固相分解途径与可用的凝相实验数据相关。

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