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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Synthesis, characterization and properties of nitrogen-rich compounds based on cyanuric acid: a promising design in the development of new energetic materials
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Synthesis, characterization and properties of nitrogen-rich compounds based on cyanuric acid: a promising design in the development of new energetic materials

机译:基于氰尿酸的富氮化合物的合成,表征和性能:新型高能材料开发中的一项有前途的设计

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摘要

Nitrogen-rich compounds such as ammonium (1), hydrazinium (2), aminoguanidinium (3), diaminoguanidinium (4), triaminoguanidinium (5), aminonitroguanidinium (6), aminocarbonylguanidinium (7), and metforminium (8), based on a nitrogen-rich anion [CA(-) (N% = 32.55%, CA = cyanuric acid) and co-crystal 5-amino-1H-tetrazole based on CA (9) were synthesized by means of metathesis reactions. The crystal structures of compounds 2, 4, and 9 center dot H2O were determined by single-crystal X-ray diffraction and fully characterized by UV-vis, FT-IR, H-1 NMR, MS and elemental analysis. The thermal stabilities were investigated by differential thermal analysis (DTA) and thermogravimetric analysis (TGA). The DTA results show that all compounds exhibit high thermal stabilities. Additionally, the heats of formation were calculated by using the B3LYP functional with the 6-311++G** basis set and a Born-Haber energy cycle. Theoretical calculations provided detonation pressures and velocities of the energetic salts within the range of 16.88-30.71 GPa and 6276.5-8392.1 m s(-1), respectively. Impact sensitivities of the compounds were determined by the Fall hammer test. All compounds show insensitive impact sensitivities of >60 J, which are better than those of TATB (50 J).
机译:富含氮的化合物,例如铵(1),肼(2),氨基胍(3),二氨基胍(4),三氨基胍(5),氨基硝基胍(6),氨基羰基胍(7)和二甲双胍(8),基于通过复分解反应合成了富氮阴离子[CA(-)(N%= 32.55%,CA =氰尿酸)和基于CA的共结晶5-氨基-1H-四唑。化合物2、4和9中心点H2O的晶体结构通过单晶X射线衍射确定,并通过UV-vis,FT-IR,H-1 NMR,MS和元素分析进行​​了全面表征。通过差热分析(​​DTA)和热重分析(TGA)研究了热稳定性。 DTA结果表明,所有化合物均表现出较高的热稳定性。此外,通过使用B3LYP官能团(基数为6-311 ++ G **和Born-Haber能量循环)来计算形成热。理论计算提供了高能盐的爆炸压力和速度,分别在16.88-30.71 GPa和6276.5-8392.1 m s(-1)范围内。化合物的冲击敏感性通过落锤试验测定。所有化合物的不敏感碰撞敏感性均大于60 J,优于TATB(50 J)。

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