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可见光诱导吲哚的去芳构化环化反应以立体选择性地形成稠合和螺环吲哚啉。

Visible-Light-Induced Dearomative Annulation of Indoles toward Stereoselective Formation of Fused- and Spiro Indolines.

作者信息

Das Suven

机构信息

Department of Chemistry, Rishi Bankim Chandra College for Women, Naihati, North 24 Parganas, West Bengal 743165, India.

出版信息

ACS Omega. 2024 Aug 13;9(34):36023-36042. doi: 10.1021/acsomega.4c02848. eCollection 2024 Aug 27.

Abstract

Dearomatization approaches are attractive for their abilities to transform simple, planar arenes into complex, three-dimensional architectures. In particular, visible-light driven dearomatization strategies are significant because of their mild, green, and sustainable nature, enabling the fabrication of new chemical bonds via an electron transfer or energy transfer process. Indole compounds, being potentially bioactive and readily accessible, can be employed efficiently as building blocks for constructing diverse annulated frameworks under photocatalysis. Highly stereoselective radical cascade reactions of appropriate indole systems can provide complex cyclic scaffolds bearing multiple stereocenters. In fact, the past few years have witnessed the renaissance of dearomative cycloadditions of indoles via visible-light-induced photocatalysis. The present review highlights recent advances (2019-mid 2024) in visible-light-driven dearomative annulation of indoles leading to formation of polycyclic indolines, including angularly fused and spiro indolines. Most of the reactions described in this review are simple, providing quick access to the desired products. Additionally, characteristic reaction mechanisms are offered to provide an understand of how indole scaffolds show distinctive reactivity under photocatalytic conditions.

摘要

脱芳构化方法因其能够将简单的平面芳烃转化为复杂的三维结构而备受关注。特别是,可见光驱动的脱芳构化策略具有重要意义,因为它们具有温和、绿色和可持续的特性,能够通过电子转移或能量转移过程构建新的化学键。吲哚化合物具有潜在的生物活性且易于获得,在光催化作用下可有效地用作构建各种稠环骨架的基石。适当的吲哚体系的高度立体选择性自由基串联反应可以提供带有多个立体中心的复杂环状支架。事实上,在过去几年中,通过可见光诱导的光催化实现吲哚的脱芳构化环加成反应迎来了复兴。本综述重点介绍了近年来(2019年至2024年年中)可见光驱动的吲哚脱芳构化环化反应的进展,该反应导致多环吲哚啉的形成,包括角稠合和螺吲哚啉。本综述中描述的大多数反应都很简单,能够快速得到所需产物。此外,还提供了特征反应机理,以帮助理解吲哚支架在光催化条件下如何表现出独特的反应性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfe7/11360027/1bd0140c50c7/ao4c02848_0001.jpg

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