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首页> 外文期刊>Chemistry Select >Synthesis of 4,8-Dinitraminodifurazano[3, 4-b,e]pyrazine Derived Nitrogen-Rich Salts as Potential Energetic Materials
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Synthesis of 4,8-Dinitraminodifurazano[3, 4-b,e]pyrazine Derived Nitrogen-Rich Salts as Potential Energetic Materials

机译:4,8-二硝基二氟苯二氟苯二生酸的合成[3,4-B,E]吡嗪衍生的富含氮的盐作为势能材料

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A series of new energetic compounds based on 4,8-dinitraminodifurazano[ 3, 4-b,e]pyrazine were synthesised and fully characterized by NMR and IR spectroscopy, and elemental analysis. The structures of compounds 3-a, 3-c, 3-f, and 3-g were determined by single-crystal X-ray diffraction analysis. The physicochemical and energetic properties of these energetic compounds including density, thermal stability, and energetic performance (e. g., detonation velocities and detonation pressures) were investigated. The combination of nitrogen-rich 4,8- dihydrodifurazano[3, 4-b,e]pyrazine framework with highly energetic nitramino moieties endowed these as-synthesised compounds with excellent detonation performance. Among these as-synthesised compounds, five energetic salts (3-a, 3-b, 3-c, 3-f, and 3-g) exhibited satisfactory calculated detonation velocities (8921-9413 m s~(-1)), which were superior to cyclo-1,3,5- trimethylene-2,4,6-trinitamine (RDX) (8878 m s~(-1)). Notably, compound 3-f exhibits an excellent calculated detonation velocity of 9166 m s~(-1) and also acceptable impact and friction sensitivities (IS=8 J, FS=108 N). The prominent detonation performance with moderate sensitivities indicates that compound 3-f has the potential to compete with traditional high explosives.
机译:一系列基于4,8-二硝基二呋喃酸[3,4-B,E]吡嗪的新能化合物被合成并通过NMR和IR光谱法以及元素分析进行​​了完全表征。通过单晶X射线衍射分析确定化合物3-A,3-C,3-F和3-G的结构。研究了这些能量化合物的物理化学和能量性能,包括密度,热稳定性和能量性能(例如,爆炸速度和爆炸压力)。富含氮的4,8-二氢二呋喃氮二硫脲[3,4-B,E]吡嗪框架与高能量的硝基氨基部分的组合结合了这些具有出色的爆炸性能的质合化合物。在这些合成的化合物中,五种能量盐(3-A,3-B,3-C,3-F和3-G)表现出令人满意的计算出的爆炸速度(8921-9413 M S〜(-1))优于Cyclo-1,3,5-三甲基-2,4,6-三烯丙胺(RDX)(8878 M S〜(-1))。值得注意的是,化合物3-F表现出出色的计算出的爆炸速度为9166 m s〜(-1),也可接受的撞击和摩擦敏感性(IS = 8 J,FS = 108 N)。具有适度敏感性的显着爆炸性能表明,化合物3-F有可能与传统的高爆炸物竞争。

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