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Crystal engineering of energetic materials: Co-crystal of 2,4,6-trinitrophenol with modified performance and improved sensitivity

机译:能量材料的水晶工程:2,4,6-三硝基苯酚的共晶,具有改性性能和改善的灵敏度

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This study discusses the molecular structures and intermolecular interactions of pure Picric Acid and Picric acid-based energetic-non energetic co-crystal. We find that picric acid co-crystals arrange in layered motifs, while pure Picric Acid features irregular, herringbone packing. Overall, the non-covalent interactions govern the structures of the co-crystals. The results showed that it-stacked structures in explosives, particularly planar layers, are very helpful to decrease their impact sensitivities and to enhance their molecular stabilities. The physicochemical properties of the compounds are theoretically and experimentally investigated in detail. This exhaustive study of co-crystallization has resulted in the alteration of vital properties including density, oxygen balance, crystal packing and detonation performance (sensitivity, velocity, pressure). These results confirm that a layered packing and strong hydrogen bonding are among the key factors for insensitive co-crystal explosives. The co-crystals sensitivity was found to be about 70% less impact sensitive than Picric Acid, all of which illustrate how co-crystallizations can be utilized for successfully modifying specific aspects of energetic materials.
机译:本研究讨论了纯麦酸和基于野生酸的能量 - 非能量共晶的分子结构和分子间相互作用。我们发现苦难酸共晶系列在分层图案中,而纯净的麦克酸特征不规则,人字形包装。总体而言,非共价相互作用控制共晶体的结构。结果表明,爆炸物,特别是平面层的IT堆叠结构非常有助于降低其影响敏感性并提高其分子稳定性。化学化合物的物理化学特性理论上和实验地详细研究。这种对共结晶的详尽研究导致了重要性的改变,包括密度,氧气平衡,晶体包装和爆炸性能(灵敏度,速度,压力)。这些结果证实层叠包装和强氢键是不敏感共晶爆炸物的关键因素。发现共晶敏感性约为敏感的敏感性约为70%,所有这些都是说明如何使用共结晶如何用于成功修改能量材料的特定方面。

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