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首页> 外文期刊>Journal of molecular modeling >Theoretical prediction of the trigger linkages, surface electrostatic potentials, and explosive sensitivities of 1,4-dinitroimidazole-N-oxide in the external electric fields
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Theoretical prediction of the trigger linkages, surface electrostatic potentials, and explosive sensitivities of 1,4-dinitroimidazole-N-oxide in the external electric fields

机译:在外部电场中1,4-二硝基咪唑-N氧化物的引发触发,表面静电电位和爆炸性敏感性的理论预测

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摘要

In order to introduce effectively the external electric fields into the explosive systems, the change trends of the strengths of trigger linkages, nitro group charges, and explosive sensitivities of 1,4-dinitroimidazole-N-oxide (1,4-DNIO) were investigated in the external electric fields at the B3LYP/6-311++G(2d,p) and M06-2X/aug-cc-pVTZ levels. The formulas for calculating the impact sensitivity by the surface electrostatic potentials were discussed. The results show that the N-NO2 bond is always the most likely trigger linkage, followed by N -> O. This is the very valuable information for the researchers engaged in the molecular design or synthesis of the energetic explosives: The influences of the weak N -> O coordination bond attached to the aromatic ring on the explosive sensitivity can be ignored when the N-NO2 bond exists. In the external electric fields along the positive directions of the N -> O and C-NO2 bond axes as well as the negative direction of the N-NO2 bond axis, the dissociation energies (BDEs) of the N-NO2 bond and h(50) values are increased, leading to the decreased impact sensitivities. The changes of the bond lengths, AIM electron density values, nitro group charges, BDEs of the trigger linkages, and impact sensitivities correlate well with the external electric field strengths, respectively. The effects of the fields on the electric spark sensitivities and shock initiation pressures are not obvious. The essence of the low BDEs of the N-NO2 bond was revealed by the resonance theory of the aromatic ring.
机译:为了将外部电场有效地引入爆炸系,研究了1,4-二硝基咪唑-N-氧化物(1,4-DNIO)的触发联系,硝基群收费和爆炸性敏感性的改变趋势在B3LYP / 6-311 ++ G(2D,P)和M06-2X / AUG-CC-PVTZ水平的外部电场。讨论了表面静电电位计算冲击灵敏度的公式。结果表明,N-NO2键总是最有可能的触发器,其次是N - > O.这是从事能量爆炸物的分子设计或合成的研究人员非常有价值的信息:弱势的影响当N-NO 2键存在时,可以忽略连接到爆炸性敏感性的芳环的N - > O配位键。在沿着N - > O和C-NO2键轴的正方向的外部电场以及N-NO2键合轴的负方向,N-NO 2键和H的解离能(BDE)( 50)值增加,导致影响敏感性降低。键合长度,目标电子密度值,硝基群收费,触发器的BDE的变化,以及冲击敏感性分别与外部电场强度很好地相关。田地对电火花敏感性和休克起始压力的影响并不明显。通过芳香环的共振理论揭示了N-NO2键的低BDES的本质。

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