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功能化的基于氮杂环卡宾的多核催化剂催化的铜催化叠氮化物-炔烃环加成反应(CuAAC):范围及机理见解

Copper-Catalyzed Azide-Alkyne Cycloaddition (CuAAC) by Functionalized NHC-Based Polynuclear Catalysts: Scope and Mechanistic Insights.

作者信息

González-Lainez Miguel, Gallegos Miguel, Munarriz Julen, Azpiroz Ramón, Passarelli Vincenzo, Jiménez M Victoria, Pérez-Torrente Jesús J

机构信息

Departamento de Química Inorgánica, Instituto de Síntesis Química y Catálisis Homogénea-ISQCH, Universidad de Zaragoza-C.S.I.C., 50009 Zaragoza, Spain.

Departamento de Química Física y Analítica, Universidad de Oviedo, 33006 Oviedo, Spain.

出版信息

Organometallics. 2022 Aug 8;41(15):2154-2169. doi: 10.1021/acs.organomet.2c00246. Epub 2022 Jul 15.

Abstract

Copper(I) [Cu(μ-Br)(BuImCHpyCHL)] (L = OMe, NEt, NHBu) compounds supported by flexible functionalized NHC-based polydentate ligands have been prepared in a one-pot procedure by reacting the corresponding imidazolium salt with an excess of copper powder and AgO. An X-ray diffraction analysis has revealed that [Cu(μ-Br)(BuImCHpyCHNEt)] is a linear coordination polymer formed by bimetallic [Cu(μ-Br)] units linked by the lutidine-based NHC-py-NEt ligand, which acts as a heteroditopic ligand with a 1κ-2κ coordination mode. We propose that the polymeric compounds break down in the solution into more compact tetranuclear [Cu(μ-Br)(BuImCHpyCHL)] compounds with a coordination mode identical to the functionalized NHC ligands. These compounds have been found to exhibit high catalytic activity in the Cu-catalyzed azide-alkyne cycloaddition (CuAAC) reaction. In particular, [Cu(μ-Br)(BuImCHpyCHNEt)] efficiently catalyzes the click reaction of a range of azides and alkynes, under an inert atmosphere at room temperature in neat conditions at a very low catalyst loading, to quantitatively afford the corresponding 1,4-disubstituted 1,2,3-triazole derivatives in a few minutes. The cycloaddition reaction of benzyl azide to phenylacetylene can be performed at 25-50 ppm catalyst loading by increasing the reaction time and/or temperature. Reactivity studies have shown that the activation of the polynuclear catalyst precursor involves the alkyne deprotonation by the NHC moiety of the polydentate ligand to afford a copper(I)-alkynyl species bearing a functionalized imidazolium ligand. DFT calculations support the participation of the dinuclear species [(CuBr)(μ-BuImCHpyCHNEt)], resulting from the fragmentation of the tetranuclear compound, as the catalytically active species. The proposed reaction pathway proceeds through zwitterionic dinuclear intermediates and entails the active participation of both copper atoms, as well as the NHC moiety as an internal base, which activates the reacting alkyne via deprotonation.

摘要

通过使相应的咪唑盐与过量的铜粉和氧化银反应,采用一锅法制备了由柔性官能化的基于氮杂环卡宾的多齿配体支撑的铜(I)化合物[Cu(μ-Br)(BuImCHpyCHL)](L = OMe、NEt、NHBu)。X射线衍射分析表明,[Cu(μ-Br)(BuImCHpyCHNEt)]是一种线性配位聚合物,由基于2,6-二甲基吡啶的氮杂环卡宾-吡啶-NEt配体连接的双金属[Cu(μ-Br)]单元形成,该配体作为具有1κ-2κ配位模式的异双齿配体。我们提出,这些聚合物化合物在溶液中分解为更紧凑的四核[Cu(μ-Br)(BuImCHpyCHL)]化合物,其配位模式与官能化的氮杂环卡宾配体相同。已发现这些化合物在铜催化的叠氮化物-炔烃环加成(CuAAC)反应中表现出高催化活性。特别是,[Cu(μ-Br)(BuImCHpyCHNEt)]在惰性气氛下于室温、纯溶剂条件下以非常低的催化剂负载量,能高效催化一系列叠氮化物和炔烃的点击反应,在几分钟内定量得到相应的1,4-二取代-1,2,3-三唑衍生物。通过增加反应时间和/或温度,苄基叠氮与苯乙炔的环加成反应可以在25 - 50 ppm的催化剂负载量下进行。反应活性研究表明,多核催化剂前体的活化涉及多齿配体的氮杂环卡宾部分对炔烃的去质子化,从而生成带有官能化咪唑鎓配体的铜(I)-炔基物种。密度泛函理论计算支持由四核化合物裂解产生的双核物种[(CuBr)(μ-BuImCHpyCHNEt)]作为催化活性物种的参与。所提出的反应途径通过两性离子双核中间体进行,并且需要两个铜原子以及氮杂环卡宾部分作为内部碱的积极参与,氮杂环卡宾部分通过去质子化活化反应性炔烃。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07dd/9374069/7b7de3960ceb/om2c00246_0002.jpg

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