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用桥连硫醚配体来调谐 Rh(II)-催化的环丙烷化反应。

Tuning Rh(II)-catalysed cyclopropanation with tethered thioether ligands.

机构信息

Department of Chemistry, University of Tennessee, Knoxville, TN 37796-1600, USA.

出版信息

Dalton Trans. 2020 Nov 17;49(44):15779-15787. doi: 10.1039/d0dt03019h.

Abstract

Dirhodium(ii) paddlewheel complexes have high utility in diazo-mediated cyclopropanation reactions and ethyl diazoacetate is one of the most commonly used diazo compounds in this reaction. In this study, we report our efforts to use tethered thioether ligands to tune the reactivity of RhII-carbene mediated cyclopropanation of olefins with ethyl diazoacetate. Microwave methods enabled the synthesis of a family of RhII complexes in which tethered thioether moieties were coordinated to axial sites of the complex. Different tether lengths and thioether substituents were screened to optimise cyclopropane yields and minimise side product formation. Furthermore, good yields were obtained when equimolar diazo and olefin were used. Structural and spectroscopic investigation revealed that tethered thioethers changed the electronic structure of the rhodium core, which was instrumental in the performance of the catalysts. Computational modelling of the catalysts provided further support that the tethered thioethers were responsible for increased yields.

摘要

二钌(II)桨轮配合物在重氮介导的环丙烷化反应中具有很高的用途,并且重氮乙酸乙酯是该反应中最常用的重氮化合物之一。在这项研究中,我们报告了使用键合硫醚配体来调节 RhII-卡宾介导的重氮乙酸乙酯与烯烃环丙烷化反应的反应性的努力。微波方法能够合成一系列 RhII 配合物,其中键合硫醚部分与配合物的轴向位置配位。筛选了不同的键合长度和硫醚取代基,以优化环丙烷的产率并最小化副产物的形成。此外,当使用等摩尔量的重氮和烯烃时,也获得了良好的产率。结构和光谱研究表明,键合硫醚改变了铑核的电子结构,这对催化剂的性能至关重要。对催化剂的计算模型进一步支持了键合硫醚是提高产率的原因。

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