首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Initial Decomposition Reactions of Bicyclo-HMX [BCHMX or cis-1,3,4,6-Tetranitrooctahydroimidazo-[4,5-d]imidazole] from Quantum Molecular Dynamics Simulations
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Initial Decomposition Reactions of Bicyclo-HMX [BCHMX or cis-1,3,4,6-Tetranitrooctahydroimidazo-[4,5-d]imidazole] from Quantum Molecular Dynamics Simulations

机译:量子分子动力学模拟的双环HMX [BCHMX或顺式1,3,4,6-四硝基八氢咪唑-[4,5-d]咪唑]的初始分解反应

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We investigated the initial chemical reactions of BCHMX [cis-1,3,4,6-tetranitrooctahydroimidazo-[4,5-d]imidazole] with the following procedure. First we used density functional theory molecular dynamics simulations (DFT-MD) on the periodic crystal to discover the initial reaction steps. This allowed us to determine the most important reactions through DFT-MD simulations at high temperatures. Then we started with the midpoint of the reaction (unimolecular or bimolecular) from the DFT-MD and carried out higher quality finite cluster DFT calculations to locate the true transition state of the reaction, followed by calculations along the reaction path to determine the initial and final states. We find that for the noncompressed BCHMX the nitro-aci isomerization reaction occurs earlier than the NO2-releasing reaction, while for compressed BCHMX intermolecular hydrogen-transfer and bimolecular NO2-releasing reactions occur earlier than the nitrous acid (HONO)-releasing reaction. At high pressures, the initial reaction involves intermolecular hydrogen transfer rather than intramolecular hydrogen transfer, and the intermolecular hydrogen transfer decreases the reaction barrier for release of NO2 by similar to 7 kcal/mol. Thus, the HONO-releasing reaction takes place more easily in compressed BCHMX. We find that this reaction barrier is 10 kcal/mol lower than the unimolecular NO2 release and similar to 3 kcal/mol lower than the bimolecular NO2 release. This rationalizes the origin of the higher sensitivity of BCHMX compared to RDX (1,3,5-trinitrohexahydro-1,3,5-triazine) and HMX (octahydro-1,3,5,7-tetranitro-1,3,5,7-tetrazocine). We suggest changes in BCHMX that might help decrease the sensitivity by avoiding the intermolecular hydrogen-transfer and HONO-releasing reaction.
机译:我们通过以下步骤研究了BCHMX [顺式1,3,4,6-四硝基八氢咪唑-[4,5-d]咪唑]的初始化学反应。首先,我们在周期性晶体上使用密度泛函理论分子动力学模拟(DFT-MD)来发现初始反应步骤。这使我们能够通过DFT-MD模拟在高温下确定最重要的反应。然后,我们从DFT-MD的反应中点(单分子或双分子)开始,进行了更高质量的有限簇DFT计算,以找到反应的真实过渡态,然后沿着反应路径进行计算,以确定初始和最终状态。我们发现,对于非压缩的BCHMX,硝基aci异构化反应发生在NO2释放反应之前,而对于压缩的BCHMX,分子间的氢转移和双分子NO2释放反应发生在亚硝酸(HONO)释放反应之前。在高压下,初始反应涉及分子间氢转移而不是分子内氢转移,并且分子间氢转移使释放NO 2的反应障碍降低了约7 kcal / mol。因此,在压缩的BCHMX中,HONO释放反应更容易发生。我们发现该反应屏障比单分子NO 2释放低10 kcal / mol,并且比双分子NO 2释放低3 kcal / mol。与RDX(1,3,5-trinitrohexahydro-1,3,5-triazine)和HMX(octahydro-1,3,5,7-tetranitro-1,3,5)相比,这使BCHMX灵敏度更高的来源合理化,7-四唑嗪)。我们建议BCHMX的变化可能通过避免分子间氢转移和HONO释放反应而有助于降低灵敏度。

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