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双(1,2,4-三唑-1-基)-1,1'-二羟二硝酰胺及其衍生物的研究:通过引入 N-氧化物设计高性能钝感含能材料。

A study of dinitro-bis-1,2,4-triazole-1,1'-diol and derivatives: design of high-performance insensitive energetic materials by the introduction of N-oxides.

机构信息

Department of Chemistry, Ludwig-Maximilians Universität München, Butenandstr. 5-13, Haus D, 80539 Munich, Germany.

出版信息

J Am Chem Soc. 2013 Jul 3;135(26):9931-8. doi: 10.1021/ja404164j. Epub 2013 Jun 25.

Abstract

In this contribution we report on the synthesis and full structural as well as spectroscopic characterization of 3,3'-dinitro-5,5'-bis-1,2,4-triazole-1,1'-diol and nitrogen-rich salts thereof. The first synthesis and characterization of an energetic 1-hydroxy-bistriazole in excellent yields and high purity is presented. This simple and straightforward method of N-oxide introduction in triazole compounds using commercially available oxone improves the energetic properties and reveals a straightforward synthetic pathway toward novel energetic 1,2,4-triazole derivatives. X-ray crystallographic measurements were performed and deliver insight into structural characteristics and strong intermolecular interactions. The standard enthalpies of formation were calculated for all compounds at the CBS-4 M level of theory, revealing highly positive heats of formation for all compounds. The energetic properties of all compounds (detonation velocity, pressure, etc.) were calculated using the EXPLO5.05 program, and the ionic derivatives show superior performance in comparison to the corresponding compounds bearing no N-oxide. All substances were characterized in terms of sensitivities (impact, friction, electrostatic) and thermal stabilities, and the ionic derivatives were found to be high thermally stable, insensitive compounds that are exceedingly powerful but safe to handle and prepare.

摘要

在本贡献中,我们报告了 3,3'-二硝基-5,5'-双-1,2,4-三唑-1,1'-二醇及其富氮盐的合成及全结构和光谱学表征。首次以优异的产率和高纯度合成和表征了一种含能 1-羟基-双三唑。该方法使用商业可得的 Oxone 在三唑化合物中简单直接地引入 N-氧化物,提高了含能性质,并为新型含能 1,2,4-三唑衍生物开辟了一条直接的合成途径。进行了 X 射线晶体学测量,深入了解了结构特征和强分子间相互作用。所有化合物的标准生成焓均在 CBS-4M 理论水平上进行了计算,所有化合物的生成焓均为正值。使用 EXPLO5.05 程序计算了所有化合物的能量性质(爆速、压力等),与不含 N-氧化物的相应化合物相比,离子衍生物表现出更好的性能。所有物质均根据其敏感度(冲击、摩擦、静电)和热稳定性进行了表征,发现离子衍生物是高热稳定、不易敏化的化合物,具有强大的威力,但易于处理和制备,非常安全。

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