State Key Laboratory of Southwestern Chinese Medicine Resources, Chengdu University of Traditional Chinese Medicine, Chengdu, 611137, China.
Chem Rec. 2023 Mar;23(3):e202200289. doi: 10.1002/tcr.202200289. Epub 2023 Feb 1.
Indoles and their derivatives have dominated a significant proportion of nitrogen-containing heterocyclic compounds and play an essential role in synthetic and medicinal chemistry, pesticides, and advanced materials. Compared with conventional synthetic strategies, direct functionalization of indoles provides straightforward access to construct diverse indole scaffolds. As we enter an era emphasizing green and sustainable chemistry, utilizing environment-friendly solvents represented by water demonstrates great potential in synthesizing valuable indole derivatives. This review aims to depict the critical aspects of aqueous-mediated indoles functionalization over the past decade and discusses the future challenges and prospects in this fast-growing field. For the convenience of readers, this review is classified into three parts according to the bonding modes (C-C, C-N, and C-S bonds), which focus on the diversity of indole derivatives, the prominent role of water in the chemical process, and the types of catalyst systems and mechanisms. We hope this review can promote the sustainable development of the direct functionalization of indoles and their derivatives and the discovery of novel and practical organic methods in aqueous phase.
吲哚及其衍生物在含氮杂环化合物中占据主导地位,在合成和药物化学、农药和先进材料中发挥着重要作用。与传统的合成策略相比,吲哚的直接官能化提供了构建各种吲哚骨架的直接途径。随着我们进入一个强调绿色和可持续化学的时代,以水为代表的环保溶剂在合成有价值的吲哚衍生物方面具有巨大的潜力。本综述旨在描述过去十年中在水介质介导的吲哚官能化方面的关键方面,并讨论这一快速发展领域的未来挑战和前景。为了方便读者,本综述根据键合模式(C-C、C-N 和 C-S 键)分为三部分,重点介绍了吲哚衍生物的多样性、水在化学反应中的突出作用以及催化剂体系和机制的类型。我们希望本综述能够促进吲哚及其衍生物的直接官能化以及在水相中的新型实用有机方法的可持续发展。