首页> 美国卫生研究院文献>Scientific Reports >New Strategy for Enhancing Energetic Properties by Regulating Trifuroxan Configuration: 34-Bis(3-nitrofuroxan-4-yl)furoxan
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New Strategy for Enhancing Energetic Properties by Regulating Trifuroxan Configuration: 34-Bis(3-nitrofuroxan-4-yl)furoxan

机译:通过调节三氟呋喃构型增强能量性质的新策略:34-双(3-硝基呋喃基-4-基)呋喃喃

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摘要

It is of current development to construct high–performance energetic compounds by aggregation of energetic groups with dense arrangement. In this study, a hydrogen-free high-density energetic 3,4-bis(3-nitrofuroxan-4-yl)furoxan (BNTFO-I) was designed and synthesized in a simple, and straightforward manner. Its isomer, 3,4-bis(4-nitrofuroxan-3-yl)furoxan (BNTFO-IV), was also obtained by isomerization. The structures of BNTFO-I and BNTFO-IV were confirmed by single-crystal X-ray analysis for the first time. Surprisingly, BNTFO-I has a remarkable calculated crystal density of 1983 g cm−3 at 296 K, which is distinctly higher than BNTFO-IV (1.936 g cm−3, 296 K), and ranks highest among azole-based CNO compounds yet reported. It is noteworthy that BNTFO-I exhibits excellent calculated detonation properties (vD, 9867 m s−1, P, 45.0 GPa). The interesting configuration differences of BNTFO-I and BNTFO-IV provide insight into the design of new advanced energetic materials.
机译:通过聚集具有密集排列的高能基团来构建高性能的高能化合物是当前的发展方向。在这项研究中,以简单,直接的方式设计和合成了无氢的高密度高能3,4-双(3-硝基呋喃氧基-4-基)呋喃聚糖(BNTFO-1)。也可以通过异构化获得其异构体3,4-双(4-硝基呋喃喃-3-基)呋喃喃(BNTFO-IV)。 BNTFO-I和BNTFO-IV的结构首次通过单晶X射线分析确定。出乎意料的是,BNTFO-I在296 K时具有1983 g cm -3 的显着计算晶体密度,明显高于BNTFO-IV(1.936 g cm -3 , 296 K),在尚未报道的基于吡咯的CNO化合物中排名最高。值得注意的是,BNTFO-I表现出优异的计算爆轰性能(vD,9867 m s -1 ,P,45.0 GPa)。 BNTFO-I和BNTFO-IV有趣的配置差异为新的先进含能材料的设计提供了见识。

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