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Theoretical study of the correlation between electrostatic hazard and electronic structure for some typical primary explosives

机译:几种典型一次炸药静电危害与电子结构相关性的理论研究

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摘要

The electronic structures of lead styphnate, hexa(1, 5-diaminotetrazole) cobalt perchlorate, lead azide, (5-cyanotetrazolato-N-2) pentaammine cobalt perchlorate, and tris(carbohydrazide) zinc perchlorate were investigated via density functional theory. The results obtained reveal that the electrostatic spark sensitivities of these primary explosives are related to their electrostatic potentials and energy gaps. Highly sensitive primary explosives show large cell electrostatic potentials per unit volume and small energy gaps. Moreover, the energy levels of the frontier molecular orbitals play an important role in triboelectrification between an explosive and a flume. The lower the energy level of the lowest unoccupied molecular orbital of the primary explosive, the more easily it can accept electrons and accumulate negative charge.
机译:通过密度泛函理论研究了苯甲酸铅,六(1,5-二氨基四唑)高氯酸钴,叠氮化铅,(5-氰基四氮杂-N-2)五氨合高氯酸钴和三(碳酰肼)高氯酸锌的电子结构。获得的结果表明,这些主要炸药的静电火花敏感性与它们的静电势和能隙有关。高度敏感的初级炸药每单位体积显示较大的细胞静电势,并且能隙较小。此外,前沿分子轨道的能级在炸药和水槽之间的摩擦起电中起着重要作用。初级炸药的最低未占据分子轨道的能级越低,它越容易接受电子并积累负电荷。

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