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通过过渡金属催化的阻转选择性C-H官能化合成轴手性化合物

Synthesis of Axially Chiral Compounds via Transition Metal-Catalyzed Atroposelective C-H Functionalization.

作者信息

Liao Gang, Shi Bing-Feng

机构信息

Department of Chemistry, Zhejiang University, Hangzhou 310058, China.

出版信息

Acc Chem Res. 2025 May 6;58(9):1562-1579. doi: 10.1021/acs.accounts.5c00173. Epub 2025 Apr 14.

Abstract

ConspectusAxially chiral skeletons are prevalent in natural products and biologically important compounds, and they are widely utilized as privileged scaffolds in enantioselective catalysis. Consequently, the catalytic atroposelective synthesis of enantiopure atropisomers has garnered considerable attention. A variety of synthetic strategies involving metal catalysis or organocatalysis have been developed. Among these elegant approaches, transition metal-catalyzed enantioselective C-H activation has emerged as an atom- and step-economical strategy to streamline the construction of axially chiral compounds in recent years.In this Account, we discuss our efforts in the atroposelective synthesis of different types of axially chiral compounds, including biaryls, atropisomeric styrenes, and C-N atropisomers, via transition metal-catalyzed enantioselective C-H activation strategies. To this end, we have developed several approaches, including the chiral transient directing group (TDG) strategy using catalytic Pd(OAc) and -leucine (Tle), as well as catalytic enantioselective systems involving Pd(II)/chiral phosphoric acid (CPA), Pd(II)/l-pyroglutamic acid (Glu), Pd(0)/norbornene cooperative catalysis with a chiral biimidazoline (BiIM) ligand, and Co(II)/salicyloxazoline (Salox).At the outset, we successfully applied the TDG strategy to access axially chiral biaryl aldehydes through Pd-catalyzed atroposelective C-H olefination, alkynylation, allylation, naphthylation, and alkylation. The efficacy of these methods has been demonstrated in the enantioselective synthesis of chiral aldehyde catalysts and natural products, such as TAN-1085, (+)-isochizandrin, and (+)-steganone. To facilitate the synthesis of biaryl atropisomers with diverse functionalities, we developed a novel Pd(II)/CPA catalytic system, which enables the preparation of various axially chiral quinolines, biaryl-2-amines, and atropisomeric biaryls bearing chalcogenoether units with high enantioselectivities. The Pd(II)/CPA system also allows for the synthesis of more challenging conjugated diene-based axially chiral styrenes.Nonbiaryl atropisomers, such as axially chiral styrenes and anilides, present synthetic challenges due to their conformational instability and higher degree of rotational freedom compared to their biaryl counterparts. We have addressed these challenges and achieved the highly efficient synthesis of atropisomeric styrenes and anilides using Pd(II)/Glu and Pd(0)/norbornene/BiIM catalysis. In addition to palladium catalysis, cobalt(II)/Salox catalysis has also been developed for the construction of chiral biaryls, atropisomers with vicinal C-N and C-C stereogenic axes, remote distinct C-N diaxes, and chiral calix[4]arenes featuring both inherent and axial chirality. We anticipate that the enantioselective C-H activation strategy will find broad applications in the construction of synthetically useful axially chiral compounds.

摘要

概述

轴手性骨架在天然产物和具有生物学重要性的化合物中普遍存在,并且它们在对映选择性催化中被广泛用作优势骨架。因此,对映体纯的阻转异构体的催化阻转选择性合成受到了相当大的关注。已经开发了多种涉及金属催化或有机催化的合成策略。在这些精妙的方法中,过渡金属催化的对映选择性C-H活化近年来已成为一种原子经济性和步骤经济性的策略,用于简化轴手性化合物的构建。

在本综述中,我们讨论了通过过渡金属催化的对映选择性C-H活化策略,在不同类型轴手性化合物(包括联芳基、阻转异构苯乙烯和C-N阻转异构体)的阻转选择性合成方面所做的努力。为此,我们开发了几种方法,包括使用催化量的Pd(OAc)₂和L-亮氨酸(Tle)的手性瞬态导向基团(TDG)策略,以及涉及Pd(II)/手性磷酸(CPA)、Pd(II)/L-焦谷氨酸(Glu)、Pd(0)/降冰片烯与手性双咪唑啉(BiIM)配体的协同催化以及Co(II)/水杨基恶唑啉(Salox)的催化对映选择性体系。

一开始,我们成功地将TDG策略应用于通过钯催化的阻转选择性C-H烯基化、炔基化、烯丙基化、萘基化和烷基化来制备轴手性联芳基醛。这些方法的有效性已在手性醛催化剂和天然产物(如TAN-1085、(+)-异五味子素和(+)-隐丹参酮)的对映选择性合成中得到证明。为了促进具有不同官能团的联芳基阻转异构体的合成,我们开发了一种新型的Pd(II)/CPA催化体系,该体系能够以高对映选择性制备各种轴手性喹啉、联芳基-2-胺以及带有硫属醚单元的阻转异构联芳基。Pd(II)/CPA体系还允许合成更具挑战性的基于共轭二烯的轴手性苯乙烯。

非联芳基阻转异构体,如轴手性苯乙烯和酰苯胺,由于其构象不稳定性以及与联芳基对应物相比更高的旋转自由度,带来了合成挑战。我们已经应对了这些挑战,并使用Pd(II)/Glu和Pd(0)/降冰片烯/BiIM催化实现了阻转异构苯乙烯和酰苯胺的高效合成。除了钯催化外,还开发了钴(II)/Salox催化用于构建手性联芳基、具有邻位C-N和C-C立体轴的阻转异构体、远程不同的C-N双轴以及同时具有固有手性和轴手性的手性杯[4]芳烃。我们预计对映选择性C-H活化策略将在合成有用的轴手性化合物的构建中找到广泛应用。

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