Computational optimum conditions for FOX-7 synthesis – A comparative synthesis route

Ken-Fa Cheng, Min-Hsien Liu, Cheng Chen, Yaw-Sun Hong
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引用次数: 5

Abstract

1,1-Diamino-2,2-dinitroethene (FOX-7) was theoretically synthesized in both aqueous and gaseous environment in this study, based on experience of experimental methods, from 2-methylimidazole via oxidation followed by nitration and aminolysis. Reaction routes closely related to experimental processes were successfully constructed, and the corresponding kinetic rate constants and energy barriers were estimated for each elementary reaction. Furthermore, other reaction conditions that are distinct from those reported in the literature (including the use of a solvated oxidative reaction system, the replacement of nitrating agent HNO3 by N2O5, and the adoption of cupric oxide or ferrous oxide catalysts for aminolysis) were employed in the corresponding reaction systems. The modeling results suggest that water is a good medium for the oxidation reaction, N2O5 is the better agent for nitration, and ferrous oxide is a suitable catalyst for aminolysis in hydrated systems. In contrast with the computed activation energies of the experimental routes, the comparable data estimates throughout the reaction stages were considered to imply more feasible pathways for FOX-7 synthesis.

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FOX-7合成的计算最优条件-比较合成路线
本研究根据实验方法的经验,以2-甲基咪唑为原料,经氧化-硝化-氨解,理论上在水、气两种环境下合成了1,1-二氨基-2,2-二硝基乙烯(FOX-7)。成功地构建了与实验过程密切相关的反应路线,并估计了每个基本反应对应的动力学速率常数和能垒。此外,在相应的反应体系中采用了与文献报道不同的其他反应条件(包括使用溶剂化氧化反应体系,用N2O5代替硝化剂HNO3,以及采用氧化铜或氧化亚铁催化剂进行氨解)。模拟结果表明,水是氧化反应的良好介质,N2O5是较好的硝化剂,氧化亚铁是水合体系中较合适的氨解催化剂。与实验路线的计算活化能相比,整个反应阶段的可比数据估计被认为暗示了更可行的FOX-7合成途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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