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Theoretical study on conformation and electronic state of Hückel-aromatic multiply N-confused [26]hexaphyrins

机译:Hückel-芳族多元N- [26]六卟啉的构象和电子态的理论研究

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摘要

Conformations and electronic states of Hückel-aromatic regular, singly, doubly, and triply N-confused [26]hexaphyrins were investigated using density functional theory (DFT) calculations. A comparison of the molecular energies of 754 structures in all revealed that the most stable conformers depend on the degree of confusion, where ring strain and intramolecular hydrogen bonding would play a critical role. Consequently, regular and singly N-confused hexaphyrins prefer a dumbbell conformation, doubly N-confused hexaphyrin prefers a rectangular conformation, and triply N-confused hexaphyrin prefers a triangular conformation. Introduction of N-confused pyrrole rings into the hexaphyrin framework causes narrower HOMO-LUMO energy gaps, while it does not affect the NICS values or aromaticity significantly. The steric repulsion imposed by meso-aryl substituents largely affects the relative energies among the conformers.
机译:使用密度泛函理论(DFT)计算研究了Hückel芳族规整,单,双和三重N混淆的[26]六氢卟啉的构象和电子态。比较所有754个结构的分子能,发现最稳定的构象异构体取决于混淆程度,其中环应变和分子内氢键起关键作用。因此,规则的和单独的N-混淆的六卟啉优选哑铃构型,双重的N-混淆的六phyrin优选矩形构型,而三次的N-混淆的六卟啉优选三角形构型。将N混淆的吡咯环引入到六卟啉骨架中会导致较窄的HOMO-LUMO能隙,而不会显着影响NICS值或芳香性。由内芳基取代基施加的空间排斥在很大程度上影响构象异构体之间的相对能量。

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