Ahmad Tauqir, Khan Sardaraz, Ullah Nisar
Chemistry Department, King Fahd University of Petroleum and Minerals, Dhahran 31261, Saudi Arabia.
The Center for Refining & Advanced Chemicals, King Fahd University of Petroleum and Minerals, Dhahran 31261, Saudi Arabia.
ACS Omega. 2022 Oct 3;7(40):35446-35485. doi: 10.1021/acsomega.2c05022. eCollection 2022 Oct 11.
Functionalized chiral indole derivatives are privileged and versatile organic frameworks encountered in numerous pharmaceutically active agents and biologically active natural products. The catalytic asymmetric Friedel-Crafts reaction of indoles, catalyzed by chiral metal complexes or chiral organocatalysts, is one of the most powerful and atom-economical approaches to access optically active indole derivatives. Consequently, a wide range of electrophilic partners including α,β-unsaturated ketones, esters, amides, imines, β,γ-unsaturated α-keto- and α-ketiminoesters, ketimines, nitroalkenes, and many others have been successfully employed to achieve a plethora of functionalized chiral indole moieties. In particular, strategies for C-H functionalization in the phenyl of indoles require incorporation of a directing or blocking group in the phenyl or azole ring of indole. The discovery of chiral catalysts which can control enantiodiscrimination has gained a great deal of attention in recent years. This review will provide an updated account on the application of the asymmetric Friedel-Crafts reaction of indoles in the synthesis of diverse chiral indole derivatives, covering the timeframe from 2011 to today.
功能化手性吲哚衍生物是众多药物活性剂和生物活性天然产物中常见的重要且通用的有机骨架。由手性金属配合物或手性有机催化剂催化的吲哚的催化不对称傅克反应,是获得光学活性吲哚衍生物最有效且原子经济的方法之一。因此,包括α,β-不饱和酮、酯、酰胺、亚胺、β,γ-不饱和α-酮酯和α-酮亚胺酯、酮亚胺、硝基烯烃等在内的多种亲电试剂已成功用于合成大量功能化手性吲哚部分。特别是,吲哚苯基的C-H官能化策略需要在吲哚的苯基或唑环中引入导向或阻断基团。近年来,能够控制对映体选择性的手性催化剂的发现受到了广泛关注。本综述将提供关于吲哚不对称傅克反应在合成各种手性吲哚衍生物中的应用的最新报道,涵盖从2011年至今的时间范围。