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通过选择性N-C/O-C裂解实现酰胺和酯交叉偶联反应的明确钯(II)-NHC预催化剂

Well-Defined Palladium(II)-NHC Precatalysts for Cross-Coupling Reactions of Amides and Esters by Selective N-C/O-C Cleavage.

作者信息

Shi Shicheng, Nolan Steven P, Szostak Michal

机构信息

Department of Chemistry , Rutgers University , 73 Warren Street , Newark , New Jersey 07102 , United States.

Department of Chemistry and Center for Sustainable Chemistry , Ghent University , Krijgslaan 281 , 9000 Ghent , Belgium.

出版信息

Acc Chem Res. 2018 Oct 16;51(10):2589-2599. doi: 10.1021/acs.accounts.8b00410. Epub 2018 Sep 21.

Abstract

Transition-metal-catalyzed cross-coupling reactions represent a most powerful tool for the rapid construction of C-C and C-X bonds available to synthetic chemists. Recently, tremendous progress has been made in the burgeoning area of cross-coupling reactions of amides and esters enabled by regio- and chemoselective acyl C-X (X = N, O) cleavage using well-defined Pd(II)-NHC complexes. The use of N-heterocyclic carbenes as ligands in palladium-catalyzed cross-couplings permits reactions of amides and esters that were previously impossible using palladium or could be achieved only under harsh conditions. These reactions provide an attractive method to synthetic chemists to manipulate the traditionally inert amide and ester bonds with the broad cross-coupling generality inherent to palladium catalysis. Research in the area of cross-coupling of stable acyl electrophiles can be broadly categorized by the type of electrophile undergoing the cross-coupling. Recent studies have shown that cross-coupling of amides by transition-metal catalysis represents one of the most straightforward and wide-ranging ways of manipulating the classically inert amide bonds into generic acyl-metal intermediates that can be systematically exploited in cross-coupling reactions as a new paradigm in organic synthesis. The key to achieving high chemoselectivity of the process is control of amidic resonance (n to π conjugation, rotation of ca. 15-20 kcal/mol in planar amides), enabling oxidative addition of the N-C amide bond to a metal in a rational and predictable manner. This mode of catalysis has been extended to C(acyl)-O cross-coupling reactions of aryl esters, where selective C-O bond cleavage is accomplished through a rational match of aryl ester electrophiles and nucleophilic metal catalysts. These two types of transition-metal-catalyzed cross-coupling reactions represent an attractive concept in synthetic chemistry because of the ubiquity of esters and amides as precursors in organic synthesis. Furthermore, the high stability of amides and esters provides unprecedented opportunities for orthogonal cross-coupling strategies in the presence of other electrophiles. In this Account, we highlight advances that have taken place in the past few years in the field of cross-coupling of amides and esters, focusing on both (1) the stereoelectronic properties of well-defined Pd(II)-NHC complexes that have been critical to realize this challenging cross-coupling manifold and (2) the role of the isomerization barrier of the acyl electrophiles undergoing the cross-coupling. In a broader sense, the chemistry described here provides a practical approach to functionalize common amide and ester functional groups in organic synthesis and establishes straightforward access to acyl-metal intermediates that enable nonconventional cross-coupling strategies.

摘要

过渡金属催化的交叉偶联反应是合成化学家快速构建碳 - 碳和碳 - 杂原子键的最强大工具之一。最近,在新兴的酰胺和酯交叉偶联反应领域取得了巨大进展,该反应通过使用定义明确的钯(II)-N-杂环卡宾配合物实现区域和化学选择性酰基碳 - 杂原子(X = N,O)裂解来实现。在钯催化的交叉偶联反应中使用N-杂环卡宾作为配体,使得酰胺和酯能够发生反应,而这些反应以前使用钯无法实现,或者只能在苛刻条件下进行。这些反应为合成化学家提供了一种有吸引力的方法,以利用钯催化固有的广泛交叉偶联通用性来操纵传统上惰性的酰胺和酯键。稳定酰基亲电试剂交叉偶联领域的研究可以根据进行交叉偶联的亲电试剂类型大致分类。最近的研究表明,过渡金属催化的酰胺交叉偶联是将经典惰性酰胺键转化为通用酰基金属中间体的最直接和最广泛的方法之一,这些中间体可以在交叉偶联反应中作为有机合成的新范式被系统地利用。实现该过程高化学选择性的关键是控制酰胺共振(n到π共轭,平面酰胺中约15 - 20千卡/摩尔的旋转),从而以合理且可预测的方式使N - C酰胺键向金属进行氧化加成。这种催化模式已扩展到芳基酯的C(酰基)-O交叉偶联反应,其中通过芳基酯亲电试剂与亲核金属催化剂的合理匹配实现选择性C - O键裂解。这两种类型的过渡金属催化的交叉偶联反应在合成化学中代表了一个有吸引力的概念,因为酯和酰胺作为有机合成前体无处不在。此外,酰胺和酯的高稳定性为在其他亲电试剂存在下的正交交叉偶联策略提供了前所未有的机会。在本综述中,我们重点介绍了过去几年在酰胺和酯交叉偶联领域取得的进展,重点关注(1)定义明确的钯(II)-N-杂环卡宾配合物的立体电子性质,这对于实现这种具有挑战性的交叉偶联体系至关重要;(2)进行交叉偶联的酰基亲电试剂的异构化势垒的作用。从更广泛的意义上讲,这里描述的化学为有机合成中常见的酰胺和酯官能团的功能化提供了一种实用方法,并建立了直接获得酰基金属中间体的途径,从而实现非常规的交叉偶联策略。

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