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电化学对映选择性镍催化醛与芳基碘的交叉偶联反应

Electrochemical Enantioselective Nickel-Catalyzed Cross-Coupling of Aldehydes with Aryl Iodides.

作者信息

Hu Liangjian, Le Blanc Lele Fosso Jospin, Guillot Régis, Mellah Mohamed, Schulz Emmanuelle

机构信息

Université Paris-Saclay, CNRS, Institut de Chimie Moléculaire et des Matériaux d'Orsay, 91400, Orsay, France.

出版信息

Chemistry. 2024 Dec 18;30(71):e202403432. doi: 10.1002/chem.202403432. Epub 2024 Nov 11.

Abstract

The preparation of enantioenriched diarylmethanol derivatives is described using nickel-catalyzed electrochemical cross-couplings between various alkyl/aryl aldehydes and aryl iodides. Performed in an electrochemical cell equipped with an iron anode and a nickel cathode, this electrocatalytic variant led to the scalemic targeted products in the presence of 2,2-bis((4 R,5S)-4,5-diphenyl-4,5-dihydrooxazol-2-yl)acetonitrile (L2), as enantiopure cyano-bis(oxazoline) ligand. X-ray structure analysis of a pre-catalyst, for instance the [Ni(L2)] complex, with L2 as an anionic bisoxazolinate ligand, confirms the chemical formulation of one nickel surrounded by two ligands. The redox behavior of the new Ni complexes generated in situ was first assessed by cyclic voltammetry showing a redox wave at ca. -1.5 V that can be assigned to the two-electron reduction of the Ni center to the Ni state. Oxidative addition between the electrogenerated Ni complex and aryl iodide was evidenced. An intense current was observed in presence of a mixture of the two substrates pertaining an electrocatalytic process. Interestingly, we found that the sacrificial iron anode plays a crucial role in the catalytic mechanism.

摘要

本文描述了使用镍催化的各种烷基/芳基醛与芳基碘化物之间的电化学交叉偶联反应制备对映体富集的二芳基甲醇衍生物。该电催化反应在配备铁阳极和镍阴极的电化学池中进行,在对映体纯的氰基双(恶唑啉)配体2,2-双((4R,5S)-4,5-二苯基-4,5-二氢恶唑-2-基)乙腈(L2)存在下,生成了具有对映体过量的目标产物。对一种预催化剂,例如[Ni(L2)]配合物进行X射线结构分析,其中L2作为阴离子双恶唑啉配体,证实了一个镍被两个配体包围的化学组成。通过循环伏安法首次评估了原位生成的新型镍配合物的氧化还原行为,结果显示在约-1.5 V处有一个氧化还原波,可归因于镍中心到Ni状态的双电子还原。证实了电生成的镍配合物与芳基碘化物之间的氧化加成反应。在两种底物的混合物存在下观察到强电流,这与电催化过程有关。有趣的是,我们发现牺牲铁阳极在催化机理中起着关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f7a/11653235/34ed1a468311/CHEM-30-e202403432-g006.jpg

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