Hydroxyl Radicals Unlock Strong C( <i>sp</i> <i> <sup>3</sup> </i> )─Si Bonds: Photocatalytic Alkylation and Silacycle Engineering

B Bo Li X Xingyi He (The Institute for Advanced Studies Engineering Research Center of Organosilicon Compounds &amp; Materials Ministry of Education State Key Laboratory of Metabolism and Regulation in Complex Organisms Wuhan University 299 Bayi Road Wuhan Hubei 430072 P.R. China) Y Yizhi Zhang K Kang Li (Guangdong Provincial Key Laboratory of Insect Developmental Biology and Applied Technology, Institute of Insect Science and Technology, School of Life Sciences, South China Normal University) Y Yingmo Zhang (The Institute for Advanced Studies Engineering Research Center of Organosilicon Compounds &amp; Materials Ministry of Education State Key Laboratory of Metabolism and Regulation in Complex Organisms Wuhan University 299 Bayi Road Wuhan Hubei 430072 P.R. China) S Shanshan Liu Y Yu‐Cheng Gu (Syngenta Jealott's Hill International Research Centre Bracknell Berkshire RG42 6EY UK) X Xiao Shen

Abstract

Abstract Organosilicon reagents play a significant role in the preparation of molecules essential to synthetic chemistry, materials science, and medicinal chemistry. However, selectively transforming strong C( sp 3 )─Si bonds in unactivated organosilicon reagents remains a significant challenge due to their high stability and low reactivity. Herein, we report that hydroxyl radical generated from water (H 2 O) can effectively drive the homolysis of strong C( sp 3 )─Si bonds, enabling radical alkylation with electron‐deficient alkenes. We reveal that H 2 O facilitates the generation of alkyl radicals, including tertiary, secondary, and primary radicals. Even the inert Et 4 Si can be activated and used in radical alkylation under our methodology. Moreover, we show that this strategy can be applied to the radical difunctionalization of silacycles, leading to the synthesis of organosilicon compounds not previously achievable through other methods. We anticipate that this approach will serve as a foundation for the development of more advanced radical reactions with unactivated organosilicon reagents, thereby facilitating the synthesis of a wide range of valuable molecules.

Article Details

Volume / Issue Vol. 65, Issue 5
Published January 28, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (8)

B

Bo Li

X

Xingyi He

The Institute for Advanced Studies Engineering Research Center of Organosilicon Compounds &amp; Materials Ministry of Education State Key Laboratory of Metabolism and Regulation in Complex Organisms Wuhan University 299 Bayi Road Wuhan Hubei 430072 P.R. China

Y

Yizhi Zhang

K

Kang Li

Guangdong Provincial Key Laboratory of Insect Developmental Biology and Applied Technology, Institute of Insect Science and Technology, School of Life Sciences, South China Normal University

Y

Yingmo Zhang

The Institute for Advanced Studies Engineering Research Center of Organosilicon Compounds &amp; Materials Ministry of Education State Key Laboratory of Metabolism and Regulation in Complex Organisms Wuhan University 299 Bayi Road Wuhan Hubei 430072 P.R. China

S

Shanshan Liu

Y

Yu‐Cheng Gu

Syngenta Jealott's Hill International Research Centre Bracknell Berkshire RG42 6EY UK

X

Xiao Shen