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炔酸酯作为在过渡金属催化下快速构建多样杂环的多功能、强效化学工具:最新进展与挑战。

Alkynoates as Versatile and Powerful Chemical Tools for the Rapid Assembly of Diverse Heterocycles under Transition-Metal Catalysis: Recent Developments and Challenges.

机构信息

Department of Chemistry, School of Natural Sciences, The University of Manchester, Oxford Road, Manchester, M13 9PL, UK.

Manchester Institute of Biotechnology, The University of Manchester, 131 Princess Street, Manchester, M1 7DN, UK.

出版信息

Top Curr Chem (Cham). 2021 Jan 5;379(1):3. doi: 10.1007/s41061-020-00316-4.

Abstract

Heterocycles, heteroaromatics and spirocyclic entities are ubiquitous components of a wide plethora of synthetic drugs, biologically active natural products, marketed pharmaceuticals and agrochemical targets. Recognizing their high proportion in drugs and rich pharmacological potential, these invaluable structural motifs have garnered significant interest, thus enabling the development of efficient catalytic methodologies providing access to architecturally complex and diverse molecules with high atom-economy and low cost. These chemical processes not only allow the formation of diverse heterocycles but also utilize a range of flexible and easily accessible building units in a single operation to discover diversity-oriented synthetic approaches. Alkynoates are significantly important, diverse and powerful building blocks in organic chemistry due to their unique and inherent properties such as the electronic bias on carbon-carbon triple bonds posed by electron-withdrawing groups or the metallic coordination site provided by carbonyl groups. The present review highlights the comprehensive picture of the utility of alkynoates (2007-2019) for the synthesis of various heterocycles (> 50 types) using transition-metal catalysts (Ru, Rh, Pd, Ir, Ag, Au, Pt, Cu, Mn, Fe) in various forms. The valuable function of versatile alkynoates (bearing multifunctional groups) as simple and useful starting materials is explored, thus cyclizing with an array of coupling partners to deliver a broad range of oxygen-, nitrogen-, sulfur-containing heterocycles alongside fused-, and spiro-heterocyclic compounds. In addition, these examples will also focus the scope and reaction limitations, as well as mechanistic investigations into the synthesis of these heterocycles. The biological significance will also be discussed, citing relevant examples of drug molecules highlighting each class of heterocycles. This review summarizes the recent developments in the synthetic methods for the synthesis of various heterocycles using alkynoates as readily available starting materials under transition-metal catalysis.

摘要

杂环、杂芳环和螺环实体是广泛的合成药物、生物活性天然产物、市售药物和农用化学品靶标中无处不在的组成部分。鉴于它们在药物中的高比例和丰富的药理潜力,这些宝贵的结构基元引起了人们的极大兴趣,从而能够开发出高效的催化方法,以提供高原子经济性和低成本的结构复杂多样的分子。这些化学过程不仅允许形成多种杂环,而且还可以在单个操作中利用一系列灵活且易于获得的构建单元来发现多样化的合成方法。炔酸酯由于其独特的固有性质,如吸电子基团对碳-碳三键的电子偏见或羰基提供的金属配位位点,在有机化学中是非常重要的、多样化的和强大的构建块。本综述重点介绍了炔酸酯(2007-2019 年)在各种过渡金属催化剂(Ru、Rh、Pd、Ir、Ag、Au、Pt、Cu、Mn、Fe)的作用下,作为单一操作中灵活且易于获得的构建单元,用于合成各种杂环(>50 种)的综合应用。探讨了多功能炔酸酯(具有多功能基团)作为简单有用的起始材料的宝贵功能,从而与一系列偶联伙伴环化,以提供广泛的含氧、氮、硫的杂环以及稠合和螺杂环化合物。此外,这些例子还将集中讨论这些杂环合成的范围和反应限制以及机理研究。还将讨论生物意义,引用突出每个杂环类别的药物分子的相关例子。本综述总结了近年来使用炔酸酯作为易得起始原料,在过渡金属催化下合成各种杂环的合成方法的最新进展。

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