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首页> 外文期刊>Journal of molecular modeling >Theoretical study on benzoheterocycle based energetic materials, effect of heterocyclic-fused, conjugation, hydrogen bond, and substitutional group on the detonation performance
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Theoretical study on benzoheterocycle based energetic materials, effect of heterocyclic-fused, conjugation, hydrogen bond, and substitutional group on the detonation performance

机译:基于苯并活性环的能量材料,杂环,缀合,氢键和取代基对爆轰性能影响的理论研究

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In this paper, four series of benzoheterocycle based energetic materials (EMs) have been designed to plan out a strategy to improve the density and safety of EMs, such as combining the insensitive group with aminobenzene ring and the high energetic nitramine explosives, benzo-heterocycle mother ring, designing multi-nitrogen heterocycles with a conjugated system containing N-N and C-N high energy bonds, and hydrogen bonding. Their optimized structure and detonation properties were first calculated and discussed using DFT methods. After calculation, these designed explosives all showed good detonation from 7352 m/s to 8788 m/s. Among them, the compounds with six nitro groups, 1c, 2c, 3c, and 4c, exhibit better performance and rather poor impact sensitivity. However, we found that the compounds with five nitro groups and one amino group have a limited performance reduction and a rapid stability improvement. These four compounds, 1b, 2b, 3b, and 4b, have good detonation performance and better stability. Moreover, the synthesis routes for these four compounds were also designed. The precursor 4-0 and mononitro product 4-1 were successfully synthesized. Their 1H NMR, single crystal, and elemental analysis were also done to verify the structures.
机译:本文旨在规划四系列的苯佐环循环的能量材料(EMS),规划了提高EMS密度和安全的策略,例如将不敏感基团与氨基苯环和高能硝胺炸药,苯并杂环相结合母环,用含有NN和CN高能键的共轭系统设计多氮杂杂拷者,以及氢键。首先使用DFT方法计算和讨论其优化的结构和爆轰性能。计算后,这些设计的爆炸物均显示出7352 m / s至8788 m / s的良好爆轰。其中,具有六个硝基基团,1C,2C,3C和4C的化合物表现出更好的性能和相当差的影响敏感性。然而,我们发现,具有五个硝基和一个氨基的化合物具有有限的性能降低和快速稳定性改善。这四种化合物,1B,2B,3B和4B具有良好的爆轰性能和更好的稳定性。此外,还设计了这四种化合物的合成途径。成功合成前体4-0和单核腈产品4-1。还进行了1H NMR,单晶和元素分析以验证结构。

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