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通过分子静电势、磁、电子离域和反应性指标研究六元硝胺类高能化合物的芳香性。

Aromaticity of six-membered nitro energetic compounds through molecular electrostatic potential, magnetic, electronic delocalization and reactivity-based indices.

机构信息

Group of Modeling of Chemical Systems using Quantum Calculations, Applied Chemistry Laboratory (LCA). University M. Khider of Biskra, 07000 Biskra, Algeria.

Molecular Chemistry and Environment Laboratory, University of Mohammed Khider of Biskra, BP 145 RP, Biskra 07000, Algeria.

出版信息

J Mol Graph Model. 2024 Jun;129:108728. doi: 10.1016/j.jmgm.2024.108728. Epub 2024 Feb 14.

Abstract

The electron density depletion associated with π-hole at the ring center typical of energetic compounds was clearly revealed by the molecular electrostatic potential (ESP). In addition, the spatial arrangement of NO groups appears to affect the ESP value in the ring center, and therefore sensitivity to detonation. Indeed, for monocyclic nitrobenzene compounds with the same number of NO groups, the ESP value in the ring center decreases as the NO groups are more closely spaced. As expected, the central rings become less aromatic as NO groups are added. The MCI, PDI, PLR, NICS(1), FLU indices are all strongly correlated with the ESP values observed in the ring center of the set of nitrobenzenes. Aromaticity indices based on electron delocalization criteria appear to be very sensitive to small variations in aromaticity. Among magnetic-based indices, only NICS(1) is capable to predict small changes in aromaticity. The PLR index derived from conceptual DFT is quite relevant for predicting small variations in aromaticity. According to our results, the most suitable aromaticity index is not based on a single criterion, and that selecting it is more subtle. Therefore, it is important to combine information from several criteria to obtain a more complete description of the aromaticity of the studied compounds.

摘要

分子静电势(ESP)清楚地揭示了与环中心π空穴相关的电子密度损耗,这在能量化合物中很典型。此外,NO 基团的空间排列似乎会影响环中心的 ESP 值,从而影响感度。事实上,对于具有相同数目的 NO 基团的单核硝基苯化合物,随着 NO 基团的间隔更近,环中心的 ESP 值降低。正如预期的那样,随着 NO 基团的加入,中心环的芳香性降低。MCI、PDI、PLR、NICS(1)、FLU 指数都与硝基苯环中心观察到的 ESP 值强烈相关。基于电子离域标准的芳香性指数似乎对芳香性的微小变化非常敏感。在基于磁性的指数中,只有 NICS(1)能够预测芳香性的微小变化。源自概念 DFT 的 PLR 指数对于预测芳香性的微小变化非常相关。根据我们的结果,最合适的芳香性指数不是基于单一标准,选择它更加微妙。因此,结合来自多个标准的信息以获得对研究化合物芳香性的更完整描述非常重要。

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