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基于密度泛函理论预测新合成的氨基硝基胍基含能配合物的爆炸性能

Prediction of explosive properties of newly synthesized amino nitroguanidine-based energetic complexes via density functional theory.

作者信息

Roohzadeh Rouhallah, Mahdavi Mohammad

机构信息

Department of Chemistry, Malek-Ashtar University of Technology, P.O. Box 83145/115, Shahin Shahr, IR, Iran.

出版信息

J Mol Model. 2020 Apr 19;26(5):104. doi: 10.1007/s00894-020-04377-6.

DOI:10.1007/s00894-020-04377-6
PMID:32306174
Abstract

Density functional theory calculations were performed to explore four octahedral energetic complexes including [CoCl (ANQ)], [Co (ANQ)(H2O)], [CuCl (ANQ)], and [Cu(NO3) (ANQ)], (ANQ = amino nitroguanidine). In this work, an attempt has been made to present useful structural data in order to investigate and predict the explosive properties of these complexes. In this regard, interaction energy (IE), natural bond orbital (NBO), atoms in a molecule (AIM) as well as the three-dimensional Hirshfeld surface analysis and the two-dimensional fingerprint plots, charge transfers, HUMO-LUMO gap, oxygen balance (%OB) amounts, and molecular electrostatic potential (MEP) maps were utilized to assign intermolecular interactions, bond lengths, the nature of metal-ligand bonds, and energies in subject compounds. The results reveal that among the five applied levels of theory, interaction energies obtaining from M06-2X/Def2TZVP were in excellent compliance with the experiments. Additionally, the N⋯O interaction, oxygen balance, density, and HOMO-LUMO gap were the most contributing factors in assigning sensitivity and detonation properties. In general, the sensitivity and detonation properties are increased in the following order: ANQ < complex1 < complex3 < complex2 < complex4. Graphical abstract.

摘要

进行了密度泛函理论计算,以探索四种八面体高能配合物,包括[CoCl (ANQ)]、[Co (ANQ)(H₂O)]、[CuCl (ANQ)]和[Cu(NO₃) (ANQ)],(ANQ = 氨基硝基胍)。在这项工作中,已尝试提供有用的结构数据,以便研究和预测这些配合物的爆炸性质。在这方面,利用相互作用能(IE)、自然键轨道(NBO)、分子中的原子(AIM)以及三维 Hirshfeld 表面分析和二维指纹图谱、电荷转移、HUMO-LUMO 能隙、氧平衡(%OB)量和分子静电势(MEP)图来确定分子间相互作用、键长、金属-配体键的性质以及目标化合物中的能量。结果表明,在五个应用的理论水平中,从 M06-2X/Def2TZVP 获得的相互作用能与实验结果非常吻合。此外,N⋯O 相互作用、氧平衡、密度和 HOMO-LUMO 能隙是确定敏感性和爆轰性质的最主要因素。一般来说,敏感性和爆轰性质按以下顺序增加:ANQ < 配合物 1 < 配合物 3 < 配合物 2 < 配合物 4。图形摘要。

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