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激发态芳香性的光谱诊断:捕捉芳香性反转时的电子结构和构象

Spectroscopic Diagnosis of Excited-State Aromaticity: Capturing Electronic Structures and Conformations upon Aromaticity Reversal.

作者信息

Oh Juwon, Sung Young Mo, Hong Yongseok, Kim Dongho

机构信息

Spectroscopy Laboratory for Functional π-Electronic Systems and Department of Chemistry , Yonsei University , Seoul 120-749 , Korea.

出版信息

Acc Chem Res. 2018 Jun 19;51(6):1349-1358. doi: 10.1021/acs.accounts.7b00629. Epub 2018 Mar 6.

Abstract

Aromaticity, the special energetic stability derived from cyclic [4 n + 2]π-conjugated electronic structures, has been the topic of intense interest in chemistry because it plays a critical role in rationalizing molecular stability, reactivity, and physical/chemical properties. Recently, the pioneering work by Colin Baird on aromaticity reversal, postulating that aromatic (antiaromatic) character in the ground state reverses to antiaromatic (aromatic) character in the lowest excited triplet state, has attracted much scientific attention. The completely reversed aromaticity in the excited state provides direct insight into understanding the photophysical/chemical properties of photoactive materials. In turn, the application of aromatic molecules to photoactive materials has led to numerous studies revealing this aromaticity reversal. However, most studies of excited-state aromaticity have been based on the theoretical point of view. The experimental evaluation of aromaticity in the excited state is still challenging and strenuous because the assessment of (anti)aromaticity with conventional magnetic, energetic, and geometric indices is difficult in the excited state, which practically restricts the extension and application of the concept of excited-state aromaticity. Time-resolved optical spectroscopies can provide a new and alternative avenue to evaluate excited-state aromaticity experimentally while observing changes in the molecular features in the excited states. Time-resolved optical spectroscopies take advantage of ultrafast laser pulses to achieve high time resolution, making them suitable for monitoring ultrafast changes in the excited states of molecular systems. This can provide valuable information for understanding the aromaticity reversal. This Account presents recent breakthroughs in the experimental assessment of excited-state aromaticity and the verification of aromaticity reversal with time-resolved optical spectroscopic measurements. To scrutinize this intriguing and challenging scientific issue, expanded porphyrins have been utilized as the ideal testing platform for investigating aromaticity because they show distinct aromatic and antiaromatic characters with aromaticity-specific spectroscopic features. Expanded porphyrins exhibit perfect aromatic and antiaromatic congener pairs having the same molecular framework but different numbers of π electrons, which facilitates the study of the pure effect of aromaticity by comparative analyses. On the basis of the characteristics of expanded porphyrins, time-resolved electronic and vibrational absorption spectroscopies capture the changes in electronic structure and molecular conformations driven by the change in aromaticity and provide clear evidence for aromaticity reversal in the excited states. The approaches described in this Account pave the way for the development of new and alternative experimental indices for the evaluation of excited-state aromaticity, which will enable overarching and fundamental comprehension of the role of (anti)aromaticity in the stability, dynamics, and reactivity in the excited states with possible implications for practical applications.

摘要

芳香性是一种源自环状[4n + 2]π共轭电子结构的特殊能量稳定性,一直是化学领域备受关注的话题,因为它在解释分子稳定性、反应性以及物理/化学性质方面起着关键作用。最近,科林·贝尔德关于芳香性反转的开创性工作,假定基态的芳香(反芳香)特性在最低激发三重态反转成反芳香(芳香)特性,引起了众多科学关注。激发态中完全反转的芳香性为理解光活性材料的光物理/化学性质提供了直接的见解。反过来,将芳香分子应用于光活性材料引发了大量揭示这种芳香性反转的研究。然而,大多数关于激发态芳香性的研究都是基于理论观点。激发态芳香性的实验评估仍然具有挑战性且十分艰巨,因为在激发态下,用传统的磁性、能量和几何指标来评估(反)芳香性很困难,这实际上限制了激发态芳香性概念的扩展和应用。时间分辨光谱学可以提供一条新的替代途径,在观察激发态分子特征变化的同时,通过实验评估激发态芳香性。时间分辨光谱学利用超快激光脉冲实现高时间分辨率,使其适合监测分子系统激发态的超快变化。这可以为理解芳香性反转提供有价值的信息。本综述介绍了激发态芳香性实验评估方面的最新突破,以及通过时间分辨光谱测量对芳香性反转的验证。为了仔细研究这个有趣且具有挑战性的科学问题,扩展卟啉已被用作研究芳香性的理想测试平台,因为它们具有独特的芳香和反芳香特性以及芳香性特异性光谱特征。扩展卟啉展现出具有相同分子框架但π电子数不同的完美芳香和反芳香同系物对,这便于通过对比分析研究芳香性的纯粹效应。基于扩展卟啉的特性,时间分辨电子和振动吸收光谱捕捉到由芳香性变化驱动的电子结构和分子构象变化,并为激发态中的芳香性反转提供了明确证据。本综述中描述的方法为开发用于评估激发态芳香性的新的替代实验指标铺平了道路,这将有助于全面而深入地理解(反)芳香性在激发态的稳定性、动力学和反应性中的作用,并可能对实际应用产生影响。

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