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Synthesis and Properties of Energetic Hydrazinium 5-Nitro-3-dinitromethyl-2H-pyrazole by Unexpected Isomerization of N-Nitropyrazole

机译:N-硝基噻唑的意外异构化合成高能5-硝基-3-二硝基甲基-2H-吡唑

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A new energetic salt, hydrazinium 5-nitro-3-dinitromethyl-2H-pyrazole, was synthesized using 1-nitro-3-trinitromethylpyrazole and hydrazine as raw materials and fully characterized by IR and NMR spectroscopy, elemental analysis, and X-ray crystallography. The isomerization of N-nitropyrazole in the reaction condition was first reported and the possible mechanism was explained by the density functional theory method. The salt has good density, high positive enthalpy of formation superior to those of the RDX and HMX, and good detonation properties comparable to those of RDX. By denitration and isomerization reactions, the salt gains a better thermal stability and lower sensitivity toward impact and friction compared with its parent compound. Based on an overall energetic evaluation, the salt has a promising future as an alternative explosive. The research also contributes to the synthesis and application of polynitro-substituted N-heterocyclic compounds as energetic materials.
机译:以1-硝基-3-三硝基甲基吡唑和肼为原料合成了一种新的高能盐肼5-硝基-3-二硝基甲基-2H-吡唑,并通过红外和核磁共振,元素分析和X射线晶体学进行了全面表征。首先报道了反应条件下N-硝基吡唑的异构化反应,并通过密度泛函理论方法解释了其可能的机理。该盐具有良好的密度,优于RDX和HMX的高正形成焓,并且具有与RDX相当的良好爆震性能。通过脱硝和异构化反应,与母体化合物相比,该盐具有更好的热稳定性,并且对冲击和摩擦的敏感性较低。根据全面的能量评估,该盐作为替代炸药具有广阔的前景。该研究还有助于多硝基取代的N-杂环化合物作为高能材料的合成和应用。

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