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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Sequential Molecular Dynamics Simulations: A Strategy for Complex Chemical Reactions and a Case Study on the Graphitization of Cooked 1,3,5-Triamino-2,4,6-trinitrobenzene
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Sequential Molecular Dynamics Simulations: A Strategy for Complex Chemical Reactions and a Case Study on the Graphitization of Cooked 1,3,5-Triamino-2,4,6-trinitrobenzene

机译:顺序分子动力学模拟:复杂化学反应的策略以及1,3,5-Triamino-2,4,6-trinitrobenzene的石墨化的案例研究

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The fundamental core of chemistry is to create new substances, and numerous complex reactions may be involved in chemical conversions. Nevertheless, clarifying the mechanisms of these complex reactions remains challenging, thereby causing insufficiencies in the fundamentals to guide new substance creation. This work proposes and emphasizes a strategy of sequential molecular dynamics simulations (SMDSs) toward complex chemical reactions. The strategy is successfully demonstrated by clarifying a complex graphitization process of 1,3,5-triamino-2,4,6-trinitrobenzene (TATB), whose mechanism has not been imaged by a single simulation alone. We conducted SMDSs with a molecular reactive force field, ReaxFF, to resemble the cook-off of TATB, i.e., a sequence of heating, expansion, and cooling acting on TATB. Graphitization is found to sequentially undergo TATB molecular decay, clustering, cluster enlargement to C sheets (sheeting), and layered stacking of C sheets, along with phase separation. Moreover, the structures graphitized from TATB can be imaged only when simulations are conducted in the sequence of heating, expansion, and cooling, in accordance with the actual conditions of cooking TATB. This successful exemplification shows that a large number of complex reaction mechanisms can be revealed using the SMDS strategy and computation ability promotion, in combination with the clarified experimental conditions. This strategy exhibits considerable potential for future use.
机译:化学的基本核心是创造新物质,化学转化可能涉及许多复杂的反应。然而,弄清这些复杂反应的机制仍然具有挑战性,从而导致指导新物质产生的基本原理不足。这项工作提出并强调了针对复杂化学反应的顺序分子动力学模拟(SMDS)策略。通过阐明1,3,5-三氨基-2,4,6-三硝基苯(TATB)的复杂石墨化过程成功地证明了该策略,其机理尚未单独通过单个模拟成像。我们用分子反作用力场ReaxFF进行了SMDS,类似于TATB的蒸煮过程,即对TATB进行加热,膨胀和冷却的顺序。发现石墨化依次经历了TATB分子衰变,聚簇,聚簇扩大到C薄板(薄片)以及C薄板的分层堆叠以及相分离。而且,只有根据烹饪TATB的实际条件,按照加热,膨胀和冷却的顺序进行模拟时,才能对从TATB石墨化的结构成像。这种成功的例证表明,使用SMDS策略和提高计算能力,结合明确的实验条件,可以揭示大量复杂的反应机理。该策略展示了未来使用的巨大潜力。

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