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Nickel-Catalyzed Reductive C(sp 2 )-Si Coupling of Chlorohydrosilanes via Si-Cl Cleavage.

Zhen-Zhen ZhaoXiaobo PangXiao-Xue WeiXue-Yuan LiuXing-Zhong Shu
Published in: Angewandte Chemie (International ed. in English) (2022)
We report here a new method for the synthesis of organohydrosilanes from phenols and ketones. This method is established through reductive C-Si coupling of chlorohydrosilanes via unconventional Si-Cl cleavage. The reaction offers access to aryl- and alkenylhydrosilanes with a scope that is complementary to those of the established methods. Electron-rich, electron-poor, and ortho-/meta-/para-substituted (hetero)aryl electrophiles, as well as cyclic and acyclic alkenyl electrophiles, were coupled successfully. Functionalities, including Grignard-sensitive groups (e.g., primary amine, amide, phenol, ketone, ester, and free indole), acid-sensitive groups (e.g., ketal and THP protection), alkyl-Cl, pyridine, furan, thiophene, Ar-Bpin, and Ar-SiMe 3 , were tolerated. Gram-scale reaction, incorporation of -Si(H)R 2 into complex biologically active molecules, and derivatization of formed organohydrosilanes are demonstrated.
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