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基于维伯格键指数的硝基芳香族含能材料的触发键分析

Trigger bond analysis of nitroaromatic energetic materials using wiberg bond indices.

作者信息

Shoaf Ashley L, Bayse Craig A

机构信息

Department of Chemistry and Biochemistry, Old Dominion University, Norfolk, Virginia, 23529.

出版信息

J Comput Chem. 2018 Jul 15;39(19):1236-1248. doi: 10.1002/jcc.25186. Epub 2018 Feb 21.

DOI:10.1002/jcc.25186
PMID:29464739
Abstract

The identification of trigger bonds, bonds that break to initiate explosive decomposition, using computational methods could help direct the development of novel, "green" and efficient high energy density materials (HEDMs). Comparing bond densities in energetic materials to reference molecules using Wiberg bond indices (WBIs) provides a relative scale for bond activation (%ΔWBIs) to assign trigger bonds in a set of 63 nitroaromatic conventional energetic molecules. Intramolecular hydrogen bonding interactions enhance contributions of resonance structures that strengthen, or deactivate, the CNO trigger bonds and reduce the sensitivity of nitroaniline-based HEDMs. In contrast, unidirectional hydrogen bonding in nitrophenols strengthens the bond to the hydrogen bond acceptor, but the phenol lone pairs repel and activate an adjacent nitro group. Steric effects, electron withdrawing groups and greater nitro dihedral angles also activate the CNO trigger bonds. %ΔWBIs indicate that nitro groups within an energetic molecule are not all necessarily equally activated to contribute to initiation. %ΔWBIs generally correlate well with impact sensitivity, especially for HEDMs with intramolecular hydrogen bonding, and are a better measure of trigger bond strength than bond dissociation energies (BDEs). However, the method is less effective for HEDMs with significant secondary effects in the solid state. Assignment of trigger bonds using %ΔWBIs could contribute to understanding the effect of intramolecular interactions on energetic properties. © 2018 Wiley Periodicals, Inc.

摘要

利用计算方法识别引发键(即断裂引发爆炸分解的键),有助于指导新型、“绿色”且高效的高能量密度材料(HEDMs)的开发。使用维伯格键指数(WBIs)将含能材料中的键密度与参考分子进行比较,可为键活化(%ΔWBIs)提供一个相对尺度,以在一组63种硝基芳烃传统含能分子中确定引发键。分子内氢键相互作用增强了共振结构的贡献,这些共振结构会增强或钝化CNO引发键,并降低基于硝基苯胺的HEDMs的敏感度。相比之下,硝基苯酚中的单向氢键增强了与氢键受体的键,但酚孤对电子会排斥并活化相邻的硝基。空间效应、吸电子基团和更大的硝基二面角也会活化CNO引发键。%ΔWBIs表明,含能分子中的硝基并非都必然被同等活化以促进引发。%ΔWBIs通常与撞击敏感度密切相关,特别是对于具有分子内氢键的HEDMs,并且比键解离能(BDEs)更能衡量引发键的强度。然而,该方法对在固态中具有显著二次效应的HEDMs效果较差。使用%ΔWBIs确定引发键有助于理解分子内相互作用对含能性质的影响。© 2018威利期刊公司

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