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无碳含能材料:对具有高爆热和稳定性的硝基取代硼氮笼状分子的计算研究

Carbon-free energetic materials: computational study on nitro-substituted BN-cage molecules with high heat of detonation and stability.

作者信息

Zeng Xin, Li Nan, Jiao Qingjie

机构信息

State Key Laboratory of Explosion Science and Technology, School of Mechatronical Engineering, Beijing Institute of Technology Beijing 100081 China

出版信息

RSC Adv. 2018 Apr 18;8(26):14654-14662. doi: 10.1039/c7ra13476b. eCollection 2018 Apr 17.

Abstract

A new series of high-energy density materials (HEDMs) BNH (NO) ( = 1-6) are studied at the M06-2X/6-311++G**, ωB97XD/6-311++G** and B3LYP/6-311++G** levels. Analysis of the structural changes caused by substituting the NO and the electronic structures, such as electron localization function (ELF), Wiberg bond index (WBI), charge transfer and bond dissociation energies (BDE), provide important insights into the essence of the chemical characteristics and stability. Moreover, the Born-Oppenheimer molecular dynamic (BOMD) simulation is performed to verify their stability, which suggests that only the BN-cage derivatives with one and two nitro groups bonding with boron atoms (NO-1-1 and NO-2-1) can remain stable under ambient conditions. To predict the detonation performance and sensitivity of these two stable BN-cage energetic molecules accurately, the density, gas phase enthalpy of formation, enthalpy of sublimation, detonation performance, impact sensitivity and BDE are calculated systematically. The calculation results show that both NO-1-1 and NO-2-1 have a higher heat of detonation, higher value of , and larger BDE of trigger bonds than CL-20.

摘要

在M06 - 2X/6 - 311++G**、ωB97XD/6 - 311++G和B3LYP/6 - 311++G水平上研究了一系列新型高能密度材料(HEDMs)BNH(NO) ( = 1 - 6)。通过分析用NO取代所引起的结构变化以及电子结构,如电子定域函数(ELF)、维伯格键指数(WBI)、电荷转移和键解离能(BDE),为化学特性和稳定性的本质提供了重要见解。此外,进行了玻恩 - 奥本海默分子动力学(BOMD)模拟以验证它们的稳定性,结果表明只有一个和两个硝基与硼原子键合的BN - 笼衍生物(NO - 1 - 1和NO - 2 - 1)在环境条件下能够保持稳定。为了准确预测这两种稳定的BN - 笼高能分子的爆轰性能和敏感性,系统地计算了密度、气相生成焓、升华焓、爆轰性能、撞击敏感性和BDE。计算结果表明,NO - 1 - 1和NO - 2 - 1都具有比CL - 20更高的爆热、更高的 值以及引发键的更大BDE。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2f2/9079922/0628051e8da7/c7ra13476b-f1.jpg

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