Carbonyl‐to‐Silicon Exchange of Aromatic Lactones via Decarbonylation
Abstract
Abstract Sila substitution, the strategy of replacing a specific carbon atom in organic molecules with silicon has garnered significant interest for the development of new functional compounds. However, the synthesis of silicon analogs remains challenging and is typically achieved through de novo methods. A promising alternative is the direct replacement of a carbon atom with silicon at a later stage of molecular construction. Here, we report a nickel‐catalyzed carbonyl‐to‐silicon (CO‐to‐Si) atom swapping in lactones. Mechanistic studies reveal that the transformation proceeds via direct decarbonylation followed by silicon insertion. This method enables the efficient conversion of a broad range of lactones, including coumarins, isocoumarins, and dibenzopyranones, into their corresponding silacyclic analogs through decarbonylative silicon insertion. The resulting silacycles serve as versatile building blocks and undergo further derivatization. Notably, this strategy facilitates late‐stage skeletal editing of pharmaceutical and natural product derivatives, providing a streamlined route to silicon‐containing scaffolds from readily available lactones.
Article Details
Authors (6)
Yu Zhang
Xiangya Hospital, Central South University Changsha China
Jialu Sun
Department of Chemistry
Zhaojing Zheng
Yuankai Zhang
Hong Lu
Key Laboratory of Synthetic and Natural Functional Molecule of the Ministry of Education, College of Chemistry & Materials Science
Hao Wei
Key Laboratory of Synthetic and Natural Functional Molecule of the Ministry of Education, College of Chemistry & Materials Science