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Energetic materials derived from nitration of 3-amino-4-chloroximefurazan

机译:从3-氨基-4-氯肟呋喃的硝化反应中获得的高能材料

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In order to develop energetic materials with better comprehensive properties, energetic salts based on bifunctionalized furazan with nitramino and dinitromethyl group were synthesized and fully characterized by multinuclear NMR (~1H, ~(13)C or~(15)N), IR spectroscopy and elemental analysis. Ammonium (lb), hydroxylammonium (2b) and aminoguanidinium salts (5b) were further confirmed by single-crystal X-ray diffraction. Additionally, their decomposition temperatures, impact sensitivities and friction sensitivities were determined. Among them, the dihydroxytammonium DNMNAF (2b) showed the best comprehensive properties (2b: d=1.930 g cm~(-3); T_d=175°C; P=43.0 GPa; v_D=9646 m s~(-1); IS=8 J; FS=64 N: 0B=-5.3%), which makes it promising high-performance energetic material.
机译:为了开发具有更好综合性能的高能材料,合成了具有硝氨基和二硝基甲基基团的双功能呋喃聚糖的高能盐,并通过多核NMR(〜1H,〜(13)C或〜(15)N),红外光谱和元素分析。通过单晶X射线衍射进一步证实了铵(1b),羟基铵(2b)和氨基胍盐(5b)。另外,测定了它们的分解温度,冲击敏感性和摩擦敏感性。其中,二羟基铵DNMNAF(2b)表现出最好的综合性能(2b:d = 1.930 g cm〜(-3); T_d = 175°C; P = 43.0 GPa; v_D = 9646 ms〜(-1); IS = 8J; FS = 64N:0B = -5.3%),这使其成为有前途的高性能含能材料。

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