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反芳香卟啉类的一般设计策略。

General Design Strategy of Anti-aromatic Porphyrinoids.

机构信息

Beijing Key Laboratory for Science and Application of Functional Molecular and Crystalline Materials, Department of Chemistry, University of Science and Technology Beijing, 100083, Beijing (P. R., China.

出版信息

Chemistry. 2022 Sep 12;28(51):e202201125. doi: 10.1002/chem.202201125. Epub 2022 Jul 26.

Abstract

A systematic investigation to arrange the typical anti-aromatic porphyrinoids in sequence was performed. Based on density functional theory calculations, six rules are summarized to obtain the high-performance anti-aromatic porphyrinoids: (1) when two atoms are deleted/added on the 18π electron current ring flowing pipe, we will immediately obtain a 16π/20π electron anti-aromatic system; (2) it is a good idea to increase the number of pyrrole/thiophen/furan units on the π-electron current ring flowing pipe; (3) the heteroatom selecting order is -O- (optimal choice), -NH- (second choice), and -S- (last choice); (4) it is worth noting that the C-C=C-C unit is not beneficial for the anti-aromatic properties; (5) it is very significant to avoid the crowded environment in the core space of an anti-aromatic molecule. In this view, -O- is much better than -S- and -NH-; (6) the "circular" skeleton is much better than an "ellipse-like", "rectangular", or "parallelogram-like" one.

摘要

进行了一项系统的研究,以将典型的反芳香卟啉类化合物按顺序排列。基于密度泛函理论计算,总结了六条规则来获得高性能的反芳香卟啉类化合物:(1)当在 18π 电子流环流管上删除/添加两个原子时,我们将立即获得 16π/20π 电子反芳香体系;(2)增加π电子流环流管上的吡咯/噻吩/呋喃单元的数量是一个好主意;(3)杂原子的选择顺序为-O-(最佳选择)、-NH-(第二选择)和-S-(最后选择);(4)值得注意的是,C-C=C-C 单元不利于反芳香性质;(5)避免反芳香分子的核心空间拥挤是非常重要的。在这方面,-O-比-S-和-NH-要好得多;(6)“圆形”骨架比“椭圆形”、“矩形”或“平行四边形”骨架要好得多。

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