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3,3'-二硝基氨基-4,4'-偶氮呋咱及其衍生物:用于高性能含能材料的多种 N-O 构筑基元的组合。

3,3'-Dinitroamino-4,4'-azoxyfurazan and its derivatives: an assembly of diverse N-O building blocks for high-performance energetic materials.

机构信息

Department of Chemistry, University of Idaho , Moscow, Idaho 83844-2343, United States.

出版信息

J Am Chem Soc. 2014 Mar 19;136(11):4437-45. doi: 10.1021/ja501176q. Epub 2014 Mar 10.

Abstract

On the basis of a design strategy that results in the assembly of diverse N-O building blocks leading to energetic materials, 3,3'-dinitroamino-4,4'-azoxyfurazan and its nitrogen-rich salts were obtained and fully characterized via spectral and elemental analyses. Oxone (potassium peroxomonosulfate) is an efficient oxidizing agent for introducing the azoxy N-oxide functionality into the furazan backbone, giving a straightforward and low-cost synthetic route. On the basis of heats of formation calculated with Gaussian 03 and combined with experimentally determined densities, energetic properties (detonation velocity, pressure and specific impulse) were obtained using the EXPLO v6.01 program. These new molecules exhibit high density, moderate to good thermal stability, acceptable impact and friction sensitivities, and excellent detonation properties, which suggest potential applications as energetic materials. Interestingly, 3,3'-dinitroamino-4,4'-azoxyfurazan (4) has the highest calculated crystal density of 2.02 g cm(-3) at 173 K (gas pycnometer measured density is 1.96 g cm(-3) at 298 K) for N-oxide energetic compounds yet reported. Another promising compound is the hydroxylammonium salt (6), which has four different kinds of N-O moieties and a detonation performance superior to those of 1,3,5,7-tetranitrotetraazacyclooctane (HMX), and 2,4,6,8,10,12-hexanitro-2,4,6,8,10,12-hexaazatetracyclododecane (CL-20). Furthermore, computational results, viz., NBO charges and ESP, also support the superior qualities of the newly prepared compounds and the design strategy.

摘要

基于一种将不同 N-O 构建块组装成高能材料的设计策略,得到了 3,3'-二硝基氨基-4,4'-偶氮呋咱及其富氮盐,并通过光谱和元素分析对其进行了全面表征。Oxone(过一硫酸氢钾)是一种有效的氧化试剂,可以将偶氮 N-氧化物官能团引入呋咱骨架中,提供了一种简单且低成本的合成路线。基于 Gaussian 03 计算得到的生成热,并结合实验测定的密度,使用 EXPLO v6.01 程序获得了高能性能(爆轰速度、压力和比冲)。这些新分子表现出高密度、中等至良好的热稳定性、可接受的撞击和摩擦灵敏度以及优异的爆轰性能,这表明它们可能作为高能材料应用。有趣的是,3,3'-二硝基氨基-4,4'-偶氮呋咱(4)在 173 K 时具有最高的计算晶体密度 2.02 g cm(-3)(在 298 K 时用气体比重计测量的密度为 1.96 g cm(-3)),是迄今为止报道的 N-氧化物高能化合物中密度最高的。另一种有前途的化合物是羟基铵盐(6),它具有四种不同种类的 N-O 基团,爆轰性能优于 1,3,5,7-四硝 1,3,5,7-四氮杂环辛烷(HMX)和 2,4,6,8,10,12-六硝 2,4,6,8,10,12-六氮杂环十二烷(CL-20)。此外,计算结果,即 NBO 电荷和 ESP,也支持新制备化合物和设计策略的优越性质。

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