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休克尔芳香性与莫比乌斯芳香性之间的转换:密度泛函理论与信息论方法研究

Switching between Hückel and Möbius aromaticity: a density functional theory and information-theoretic approach study.

作者信息

Yu Donghai, Rong Chunying, Lu Tian, Geerlings Paul, De Proft Frank, Alonso Mercedes, Liu Shubin

机构信息

Key Laboratory of Chemical Biology and Traditional Chinese Medicine Research (Ministry of Education of China), College of Chemistry and Chemical Engineering, Hunan Normal University, Changsha, 410081, China.

出版信息

Phys Chem Chem Phys. 2020 Feb 28;22(8):4715-4730. doi: 10.1039/c9cp06120g. Epub 2020 Feb 14.

Abstract

Benziporphyrins are versatile macrocycles exhibiting aromaticity switching behaviors. The existence of both Hückel and Möbius (anti)aromaticity has been reported in these systems, whose validity is respectively governed by the [4n + 2] and [4n] π-electron rule on the macrocyclic pathway. Despite the experimental evidence on the floppiness of benziporphyrins, the switching mechanism between Hückel and Möbius structures is still not clear, as well as the factors influencing the stability of the different π-conjugation topologies. For these reasons, we performed a systematic study on A,D-di-p-benzihexaphyrins(1.1.1.1.1.1) with two redox states corresponding to [28] and [30] π-electron conjugation pathways. Whereas benzi[28]hexaphyrin obeys Möbius aromaticity, benzi[30]hexaphyrin follows Hückel aromaticity. The dynamic interconversion between Möbius and Hückel aromaticity is investigated through the rotation of a phenylene ring, which acts as the topology selector. Further analyses of the energy profiles using energy decomposition and information-theoretic approaches provide new insights into conformational stability, aromaticity and antiaromaticity for these species. Strong and opposite cross correlations between aromaticity indexes and information-theoretic quantities were found for the two macrocyclic systems with opposite global aromaticity and antiaromaticity behaviors. These results indicate that Hückel and Möbius aromaticity and antiaromaticity, though qualitatively different, are closely related and can be interchanged, and information-theoretic quantities provide a novel understanding about their relevance. Our present results should provide in-depth insights to appreciate the nature and origin about Möbius (anti)aromaticity and its close relationship with Hückel (anti)aromaticity.

摘要

苯并卟啉是具有芳香性切换行为的多功能大环化合物。在这些体系中已报道了休克尔和莫比乌斯(反)芳香性的存在,其有效性分别由大环路径上的[4n + 2]和[4n]π电子规则决定。尽管有关于苯并卟啉柔韧性的实验证据,但休克尔和莫比乌斯结构之间的切换机制仍不清楚,影响不同π共轭拓扑稳定性的因素也不明确。基于这些原因,我们对具有对应于[28]和[30]π电子共轭路径的两种氧化还原态的A,D - 二 - 对 - 苯并六卟啉(1.1.1.1.1.1)进行了系统研究。其中苯并[28]六卟啉遵循莫比乌斯芳香性,而苯并[30]六卟啉遵循休克尔芳香性。通过作为拓扑选择器的亚苯基环的旋转来研究莫比乌斯和休克尔芳香性之间的动态相互转化。使用能量分解和信息论方法对能量分布进行的进一步分析为这些物种的构象稳定性、芳香性和反芳香性提供了新的见解。对于具有相反全局芳香性和反芳香性的两个大环体系,发现芳香性指数与信息论量之间存在强烈且相反的交叉相关性。这些结果表明,休克尔和莫比乌斯芳香性及反芳香性虽然在性质上不同,但密切相关且可以相互转换,信息论量为它们的相关性提供了新的理解。我们目前的结果应为深入理解莫比乌斯(反)芳香性的本质和起源及其与休克尔(反)芳香性的密切关系提供深刻见解。

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