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末端连接到镁醇、铁醇和锌醇片段的低聚吡咯衍生物反应活性的理论研究:自然键轨道、密度泛函理论和含时密度泛函理论计算

Theoretical study of the reactivity of oligo-pyrrole derivatives linked at their ends to the Magnesol, Ferrol, and Zinkol fragments: NBO, DFT, and TD-DFT calculations.

作者信息

Zenati Mohammed, Hedidi Madani, Elhorri Abdelkader M, Mahdjoub-Araibi Hicham, Laib Assia

机构信息

Laboratory of Materials Chemistry Catalysis and Reactivity, Department of Chemistry, Faculty of Exact Sciences and Informatics, Hassiba BenBouali University of Chlef, P.O. Box 78C, Ouled Fares, Chlef, 02180, Algeria.

出版信息

J Mol Model. 2025 Aug 1;31(8):226. doi: 10.1007/s00894-025-06443-3.

DOI:10.1007/s00894-025-06443-3
PMID:40748462
Abstract

CONTEXT

This study compares the electronic and structural properties of oligopyrroles (OPn) grafted with metal rings (Magnesol OPnMg, Ferrol OPnFe, and Zinkol OPnZn) with those of standard oligopyrroles (OPn). In the context of the polymerization of oligomers from n = 1 to n = 15, the parameters of global reactivity and excited states obey exponential equations (ƒ(x) = A + B Exp), allowing values to be predicted to infinity. The corresponding infinity results reveal that energy gaps (ΔE) vary between 3.14 and 5.20 eV, while chemical hardnesses (η) oscillate between 1.507 and 2.60 eV, with overall electrophilicity (ω) and nucleophilicity (Nu) of 0.74-1.40 eV and 5.47-5.53 eV, respectively. The new oligopyrrole derivatives show increases in intramolecular charge transfer (ICT) and UV-Vis absorptions in the violet (λ between 407 and 431 nm). NBO analysis shows a reduction in hydrogen charges in the -NH groups of oligopyrroles based on metal derivatives, enhancing their nucleophilicity. In addition, these molecules display better solubility, with favorable solvation energies (ΔG) (24-35 kcal-mol) compared to OPn. Finally, metal-based derivatives show stronger interactions with formaldehyde (HCHO) in aqueous media than OPn, demonstrating interaction energy differences (E) ranging from 0.7 to 1.40 kcal-mol.

METHODS

All calculations were performed using the Gaussian 16 program. The selected functionals are: B3LYP, CAM-BLYP, B3LYP-D3, CAM-BLYP-D3, and TD-CAM-BLYP. The basis-sets used are: 6-31 +  + G(d,p) and LanL2DZ. Finally, the natural bond orbital (NBO) method was used in this study.

摘要

背景

本研究比较了接枝有金属环(镁基低聚吡咯Magnesol OPnMg、铁基低聚吡咯Ferrol OPnFe和锌基低聚吡咯Zinkol OPnZn)的低聚吡咯(OPn)与标准低聚吡咯(OPn)的电子和结构性质。在从n = 1到n = 15的低聚物聚合过程中,全局反应性和激发态参数服从指数方程(ƒ(x) = A + B Exp),从而可以预测到无穷大的值。相应的无穷大结果表明,能隙(ΔE)在3.14至5.20电子伏特之间变化,而化学硬度(η)在1.507至2.60电子伏特之间振荡,总体亲电性(ω)和亲核性(Nu)分别为0.74 - 1.40电子伏特和5.47 - 5.53电子伏特。新的低聚吡咯衍生物在分子内电荷转移(ICT)和紫外 - 可见吸收(在407至431纳米之间的紫光区域)方面有所增加。NBO分析表明,基于金属衍生物的低聚吡咯中 -NH基团的氢电荷减少,增强了它们的亲核性。此外,与OPn相比,这些分子具有更好的溶解性,其溶剂化能(ΔG)有利(24 - 35千卡 - 摩尔)。最后,基于金属的衍生物在水性介质中与甲醛(HCHO)的相互作用比OPn更强,表明相互作用能差(E)在0.7至1.40千卡 - 摩尔之间。

方法

所有计算均使用高斯16程序进行。所选的泛函为:B3LYP、CAM - BLYP、B3LYP - D3、CAM - BLYP - D3和TD - CAM - BLYP。使用的基组为:6 - 31 + + G(d,p)和LanL2DZ。最后,本研究使用了自然键轨道(NBO)方法。

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