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光激发手性[4n]轮烯衍生物的反转支持贝尔德芳香性的能量学

Energetics of Baird aromaticity supported by inversion of photoexcited chiral [4n]annulene derivatives.

作者信息

Ueda Michihisa, Jorner Kjell, Sung Young Mo, Mori Tadashi, Xiao Qi, Kim Dongho, Ottosson Henrik, Aida Takuzo, Itoh Yoshimitsu

机构信息

Department of Chemistry and Biotechnology, School of Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-8656, Japan.

Department of Chemistry - Ångström Laboratory, Uppsala University, Box 523, Uppsala, 751 20, Sweden.

出版信息

Nat Commun. 2017 Aug 24;8(1):346. doi: 10.1038/s41467-017-00382-1.

Abstract

For the concept of aromaticity, energetic quantification is crucial. However, this has been elusive for excited-state (Baird) aromaticity. Here we report our serendipitous discovery of two nonplanar thiophene-fused chiral [4n]annulenes COT and CDH , which by computational analysis turned out to be a pair of molecules suitable for energetic quantification of Baird aromaticity. Their enantiomers were separable chromatographically but racemized thermally, enabling investigation of the ring inversion kinetics. In contrast to CDH , which inverts through a nonplanar transition state, the inversion of COT , progressing through a planar transition state, was remarkably accelerated upon photoexcitation. As predicted by Baird's theory, the planar conformation of COT is stabilized in the photoexcited state, thereby enabling lower activation enthalpy than that in the ground state. The lowering of the activation enthalpy, i.e., the energetic impact of excited-state aromaticity, was quantified experimentally to be as high as 21-22 kcal mol.Baird's rule applies to cyclic π-conjugated molecules in their excited state, yet a quantification of the involved energetics is elusive. Here, the authors show the ring inversion kinetics of two nonplanar and chiral [4n]annulenes to support Baird's rule from an energetic point of view.

摘要

对于芳香性的概念,能量量化至关重要。然而,对于激发态(贝尔德)芳香性而言,这一直难以实现。在此,我们报告偶然发现的两个非平面噻吩稠合的手性[4n]轮烯COT和CDH,通过计算分析表明它们是一对适用于贝尔德芳香性能量量化的分子。它们的对映体可通过色谱法分离,但会发生热消旋,从而能够研究环翻转动力学。与通过非平面过渡态翻转的CDH不同,COT通过平面过渡态进行的翻转在光激发时显著加速。正如贝尔德理论所预测的,COT的平面构象在光激发态下稳定,从而使得活化焓低于基态。活化焓的降低,即激发态芳香性的能量影响,通过实验量化高达21 - 22 kcal mol。贝尔德规则适用于处于激发态的环状π共轭分子,但相关能量学的量化一直难以捉摸。在此,作者展示了两个非平面手性[4n]轮烯的环翻转动力学,从能量角度支持了贝尔德规则。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03a1/5570949/a28fd9be3a0a/41467_2017_382_Fig1_HTML.jpg

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