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有机硫和有机硒化合物作为Sonogashira偶联反应催化体系的配体。

Organosulphur and organoselenium compounds as ligands for catalytic systems in the Sonogashira coupling.

作者信息

Purohit Suraj, Rana Ramakshi, Tyagi Anupma, Bahuguna Anurag, Oswal Preeti, Kumar Arun

机构信息

Department of Chemistry, School of Physical Sciences, Doon University, Dehradun, 248001, India.

Department of Chemistry, Texas A&M University, College Station, 77842-3012, USA.

出版信息

Org Biomol Chem. 2024 Aug 7;22(31):6215-6245. doi: 10.1039/d4ob00552j.

Abstract

Sonogashira coupling is a reaction of aryl/vinyl halides with terminal alkynes. It is used for the synthesis of conjugated enynes. Generally, copper (Cu) is required as a mediator for this reaction. It requires a long reaction time, high catalyst loading, or expensive ligands. Recently, homogeneous, heterogeneous, and nanocatalysts have been developed using organosulphur and organoselenium compounds as building blocks. Preformed complexes of metals with organosulphur and organoselenium ligands are used for homogeneous catalysis. Heterogeneous catalytic systems have also been developed using Cu, Pd, and Ni as metals. The nanocatalytic systems (synthesized using such ligands) include copper selenides and stabilized palladium(0) nanospecies. This article aims to cover the developments in the field of the processes and techniques used so far to generate catalytically relevant organic ligands having sulphur or selenium donor sites, the utility of such ligands in the syntheses of homogeneous, heterogeneous, and nanocatalytic systems, and critical analysis of their application in the catalysis of this coupling reaction. The results of catalysis are analyzed in terms of the effects of the S/Se donor, halogen atom of aryl halide, the effect of the presence/absence of electron-withdrawing or electron-donating groups or substituents on the aromatic ring of haloarenes/substituted phenylacetylenes, as well as the position ( or ) of the substitution. Substrate scope is discussed for all the kinds of catalysis. The supremacy of heterogeneous and nanocatalytic systems indicates promising future prospects.

摘要

Sonogashira偶联反应是芳基/卤化乙烯与末端炔烃的反应。它用于合成共轭烯炔。通常,该反应需要铜(Cu)作为介质。它需要较长的反应时间、高催化剂负载量或昂贵的配体。最近,已开发出使用有机硫和有机硒化合物作为结构单元的均相、非均相和纳米催化剂。金属与有机硫和有机硒配体的预形成配合物用于均相催化。也已开发出使用Cu、Pd和Ni作为金属的非均相催化体系。纳米催化体系(使用此类配体合成)包括硒化铜和稳定化的钯(0)纳米物种。本文旨在涵盖迄今为止用于生成具有硫或硒供体位点的催化相关有机配体的工艺和技术领域的进展、此类配体在均相、非均相和纳米催化体系合成中的效用,以及对其在该偶联反应催化中的应用的批判性分析。根据S/Se供体的影响、芳基卤化物的卤原子、卤代芳烃/取代苯乙炔的芳环上吸电子或供电子基团或取代基的存在与否的影响,以及取代的位置(或)来分析催化结果。讨论了所有类型催化的底物范围。非均相和纳米催化体系的优势表明了广阔的未来前景。

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