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烯烃和芳烃的光环化反应:借助激发态反芳香性穿透芳香保护壳

Photocyclization of Alkenes and Arenes: Penetrating Through Aromatic Armor with the Help of Excited State Antiaromaticity.

作者信息

Santos Nikolas R Dos, Wu Judy I, Alabugin Igor V

机构信息

Department of Chemistry and Biochemistry, Florida State University, Tallahassee, FL 32306, USA.

Department of Chemistry, University of Houston, Houston, TX 77204, USA.

出版信息

Chemistry (Basel). 2025 Jun;7(3). doi: 10.3390/chemistry7030079. Epub 2025 May 9.

Abstract

This review focuses on photocyclization reactions involving alkenes and arenes. Photochemistry opens up synthetic opportunities difficult for thermal methods, using light as a versatile tool to convert stable ground-state molecules into their reactive excited counterparts. This difference can be particularly striking for aromatic molecules, which, according to Baird's rule, transform from highly stable entities into their antiaromatic "evil twins". We highlight classical reactions, such as the photocyclization of stilbenes, to show how alkenes and aromatic rings can undergo intramolecular cyclizations to form complex structures. When possible, we explain how antiaromaticity develops in excited states and how this can expand synthetic possibilities. The review also examines how factors such as oxidants, substituents, and reaction conditions influence product selectivity, providing useful insights for improving reaction outcomes and demonstrating how photochemical methods can drive the development of new synthetic strategies.

摘要

本综述聚焦于涉及烯烃和芳烃的光环化反应。光化学利用光作为一种通用工具,将稳定的基态分子转化为其具有反应活性的激发态对应物,从而开启了热方法难以实现的合成机会。对于芳香分子而言,这种差异尤为显著,根据贝尔德规则,芳香分子会从高度稳定的实体转变为其反芳香性的“邪恶孪体”。我们重点介绍经典反应,如二苯乙烯的光环化反应,以展示烯烃和芳香环如何进行分子内环化反应以形成复杂结构。在可能的情况下,我们解释了反芳香性在激发态中是如何形成的,以及这如何拓展合成可能性。本综述还研究了诸如氧化剂、取代基和反应条件等因素如何影响产物选择性,为改善反应结果提供了有用的见解,并展示了光化学方法如何推动新合成策略 的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0ea/12363374/515b38169e53/nihms-2104331-f0033.jpg

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