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Cocrystals and Salts of Tetrazole-Based Energetic Materials

机译:基于四唑的能量材料的共晶和盐

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摘要

Many energetic materials are unsuitable for practical purposes due to unacceptable sensitivity toward heat, impact, shock, or friction. In addition, chemical reactivity can also be of concern from the point of view of storage and shelf life. In order to develop new solid forms of energetic materials, several tetrazole-based energetic materials with suboptimal thermal and impact sensitivities were subjected to cocrystallization experiments to enhance their properties. Cocrystals and salts of the targets were obtained with several nitrogen- and oxygen-based acceptors. The impact sensitivity and thermal instability were substantially improved with the introduction of coformers. Particularly, the cocrystal 5-(nitrimino)-1H-tetrazole: pyrazine-N, N'-dioxide (D1:A6) has improved the decomposition temperature by 59 degrees C and was found to be about four times less impact sensitive than the parent explosive.
机译:由于对热,冲击,冲击或摩擦不可接受的敏感性,许多能量材料不适合实际目的。 此外,化学反应性也可以从储存和保质期的角度来看。 为了开发新的固体能量材料,具有几种具有次优热和冲击性敏感性的四唑类的能量材料,对Cocryalization实验进行了化合物,以增强它们的性质。 用几种氮气和氧基受体获得靶标的盐和盐。 随着COFORMERS的引入,影响敏感性和热不稳定性显着改善。 特别是,聚酰胺5-(硝基氨基)-1H-四唑:吡嗪-N,N'-二氧化碳(D1:A6)的分解温度通过59℃改善,发现敏感敏感的敏感性约为4倍 爆炸性。

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