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首页> 外文期刊>Propellants, Explosives, Pyrotechnics >Calculation of Detonation Velocity,Pressure,and Electric Sensitivity of Nitro Arenes Based on Quantum Chemistry
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Calculation of Detonation Velocity,Pressure,and Electric Sensitivity of Nitro Arenes Based on Quantum Chemistry

机译:基于量子化学的硝基芳烃爆轰速度,压力和电灵敏度计算

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The DFT-B3LYP method,with basis set 6-31G~*,is employed to optimize molecular geometries and electronic structures of thirty-nine nitro arenes.The averaged molar volume (V)and theoretical density (g)are estimated using the Monte-Carlo method,based on 0.001 electrons/bohr~3 density space and a self-compiled program.The detonation velocity (D)and pressure (P)of the explosives are estimated by using the Kamlet-Jacbos equation on the basis of the theoretical density and heat of formation (DELTA_fH),which is calculated using the PM3 method.The reliability of this theoretical method and results are tested by comparing the theoretical values of rho and D with the experimental or referenced values.The theoretical values of D and P are correlated with the experimental values of electric sensitivity (E_(ES)).It is found that,for the nitro arenes,there is a linear relationship between the square of detonation velocity (D~2)or detonation pressure (P)and electric sensitivity (E_(ES),which suggests that such a theoretical approach can be used to predict or judge the magnitude of E_(ES),which is difficult to measure in the molecular design of energetic materials.In addition,we have discussed the influence of the substituted groups and the parameters of the electronic structure on density,detonation velocity,pressure,and electric sensitivity,and have shown that the substituted groups have the effect of activity or insensitivity,and that the influence of Q_(NO2)and E_(LUMO)is important.
机译:采用DFT-B3LYP方法(基数为6-31G〜*)优化了39个硝基芳烃的分子几何结构和电子结构。使用Monte-Monte估计平均摩尔体积(V)和理论密度(g)。 Carlo方法,基于0.001个电子/玻尔〜3密度空间和一个自编译程序。在理论密度的基础上,使用Kamlet-Jacbos方程估算炸药的爆炸速度(D)和压力(P)。通过PM3方法计算出的地层热(DELTA_fH)。通过将rho和D的理论值与实验或参考值进行比较,测试了该理论方法和结果的可靠性.D和P的理论值为与硝基苯的芳烃在爆轰速度(D〜2)或爆轰压力(P)的平方和电敏感度之间存在线性关系。 (E_(ES),这表明这样的理论方法可以用来预测或判断E_(ES)的大小,这在高能材料的分子设计中很难测量。此外,我们还讨论了取代基的影响以及E_(ES)的参数。电子结构对密度,爆轰速度,压力和电敏感度的影响,表明取代基具有活性或不敏感作用,并且Q_(NO2)和E_(LUMO)的影响很重要。

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