Synthesis of lactones and lactams via C(sp3)–H bond functionalization

IF 39 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Egambaram Premkumar, Ramdas Sreedharan, Premananda Ghosh, Tanay Pal, Debabrata Maiti and Thirumanavelan Gandhi
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Abstract

The field of directing group-assisted, transition-metal-catalyzed functionalization has undergone a significant transformation, evolving from the use of auxiliary group attachment for the exploitation of native functional groups in novel organic reactions. In particular, coordination-assisted C(sp3)–H bond functionalization has revolutionized synthetic planning to build molecular complexity. Recently, the use of native directing groups in transition-metal-catalyzed reactions has allowed a step-economic process for increased access to biologically important lactones and lactams. Accordingly, lactones and lactams are unavoidable structural motifs with widespread presence in many biological and pharmaceutical arenas, encouraging researchers to access and modify their structures for improved biological properties. In this review, we showcase the diverse aspects of transition metal catalysis, biocatalysis, and photocatalytic C(sp3)–H bond functionalization to access lactones and lactams assisted by carboxylic acid and amines/amides with auxiliary or transient directing groups or unique ligands. This article also emphasizes the role of specially designed complexes, artificial metalloenzymes, and biocatalysts in assembling lactones and lactams. Besides, three-component reactions involving CO as a C1 synthon play a vital role in developing these heterocycles. Importantly, the crucial role of ligands in determining regioselectivity and enhancing enantioselectivity is discussed thoroughly. For better clarity, this review is divided into twelve sections based on the catalysts involved, with subsections categorized by the type of bond activation or formation. Overall, this review aims to inspire the growth of C(sp3)–H bond functionalization, leading to the integration of lactams and lactones in organics.

Abstract Image

Abstract Image

通过C(sp3) -氢键功能化合成内酯和内酰胺
指导基团辅助,过渡金属催化功能化的领域已经经历了重大的转变,从使用辅助基团连接来开发新的有机反应中的天然官能团。特别是,配位辅助的C(sp3) -氢键功能化已经彻底改变了合成计划,以构建分子复杂性。最近,在过渡金属催化反应中使用天然导向基团使得一个阶梯经济的过程增加了获得生物学上重要的内酯和内酰胺的途径。因此,内酯和内酰胺是不可避免的结构基序,广泛存在于许多生物和制药领域,鼓励研究人员获取和修改其结构以改善生物特性。在这篇综述中,我们展示了过渡金属催化,生物催化和光催化C(sp3) -H键功能化的各个方面,以获得由羧酸和胺/酰胺辅助的内酯和内酰胺,以及辅助或瞬态导向基团或独特的配体。本文还强调了特殊设计的配合物、人工金属酶和生物催化剂在组装内酯和内酰胺中的作用。此外,以CO为C1合子的三组分反应在这些杂环的形成中起着至关重要的作用。重要的是,配体在确定区域选择性和增强对映体选择性方面的关键作用进行了深入的讨论。为了更清楚地了解,本文根据所涉及的催化剂分为十二个部分,并根据键激活或形成的类型进行分类。总之,本综述旨在激发C(sp3) -H键功能化的增长,从而导致有机物中内酰胺和内酯的整合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Chemical Society Reviews
Chemical Society Reviews 化学-化学综合
CiteScore
80.80
自引率
1.10%
发文量
345
审稿时长
6.0 months
期刊介绍: Chemical Society Reviews is published by: Royal Society of Chemistry. Focus: Review articles on topics of current interest in chemistry; Predecessors: Quarterly Reviews, Chemical Society (1947–1971); Current title: Since 1971; Impact factor: 60.615 (2021); Themed issues: Occasional themed issues on new and emerging areas of research in the chemical sciences
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