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吡唑啉卟啉互变异构体和相关质子化物种的芳构性特征和相对稳定性:吡唑如何改变碳杂卟啉系统性质的深入了解。

Aromatic Character and Relative Stability of Pyrazoloporphyrin Tautomers and Related Protonated Species: Insights into How Pyrazole Changes the Properties of Carbaporphyrinoid Systems.

机构信息

Department of Chemistry, Illinois State University, Normal, IL 61790-4160, USA.

出版信息

Molecules. 2023 Mar 22;28(6):2854. doi: 10.3390/molecules28062854.

Abstract

Pyrazoloporphyrins (PzPs), which are porphyrin analogues incorporating a pyrazole subunit, are examples of carbaporphyrin-type structures with a carbon atom within the macrocyclic cavity. DFT calculations were used to assess a series of 17 PzP tautomers, nine monoprotonated species and four related diprotonated PzP dications. The geometries of the structures were optimized using M06-2X/6-311++G(d,p), and the relative stabilities computed with the cc-PVTZ functional. Nucleus independent chemical shifts, both NICS(0) and NICS(1), were calculated, and the anisotropy of the induced current density (AICD) plots were generated for all of the species under investigation. The results for free base PzPs show that fully aromatic PzP tautomers are not significantly more stable than weakly aromatic cross-conjugated species. In addition, strongly aromatic structures with internal CHs are much less stable, a feature that is also seen for protonated PzPs. The degree of planarity for the individual macrocycles does not significantly correlate with the stability of these structures. The results allow significant aromatic conjugation pathways to be identified in many cases, and provide insights into the aromatic properties of this poorly studied system. These investigations also complement experimental results for PzPs and emphasize the need for further studies in this area.

摘要

吡唑并卟啉(PzP)是一种在卟啉类似物中引入吡唑亚基的化合物,属于碳杂卟啉型结构,其大环空腔内有一个碳原子。我们使用密度泛函理论(DFT)计算评估了一系列 17 种 PzP 互变异构体、9 种单质子化物种和 4 种相关的二质子化 PzP 二阳离子。我们使用 M06-2X/6-311++G(d,p) 优化了结构的几何形状,并使用 cc-PVTZ 函数计算了相对稳定性。我们计算了核独立化学位移(NICS(0)和 NICS(1)),并为所有研究物种生成了各向异性诱导电流密度(AICD)图。自由碱基 PzP 的结果表明,完全芳香的 PzP 互变异构体并不比弱芳香交叉共轭物种稳定得多。此外,具有内部 CH 的强芳香结构稳定性要低得多,这一特征在质子化的 PzP 中也很明显。单个大环的平面化程度与这些结构的稳定性没有显著相关性。这些结果允许在许多情况下识别出显著的芳香共轭途径,并深入了解这一研究较少的系统的芳香性质。这些研究还补充了 PzP 的实验结果,并强调了在该领域进一步研究的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26d4/10056226/7bbf2118e462/molecules-28-02854-g001.jpg

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