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◆ Journal of the American Chemical Society2025-10-19· Hydrosilylation

Rare-Earth-Catalyzed Selective Hydrosilylation of Iminocyclopropanes: Efficient Access to Azasilacyclopentanes

Xiaoming Xu, Yaxin Feng, Fen Wang, Yuhong Liu, Xiufang Xu, Shou‐Fei Zhu, Jianfeng Li, Chunming Cui

原始摘要(英文原文)· Original abstract
Catalytic hydrosilylation of iminocyclopropanes (ICPs) may selectively yield intriguing silicon-nitrogen heterocycles. Rare-earth alkyl complexes bearing silyl-binaphthyldiamide ligands have been synthesized and employed as catalysts for the hydrosilylation of ICPs with primary silanes. The catalytic reactions selectively yielded a series of azasilacyclopentanes in excellent yields (93-98%) with high selectivity (>99%) at room temperature. The catalytic reactions could be scaled up to the gram scale with 0.5 mol·% loadings of the catalysts. Notably, the azasilacyclopentanes could undergo facile alcoholysis and hydrolysis to give amine-functionalized siloxanes and silanols. The deuterium labeling and kinetic isotopic effect experiments as well as DFT calculations disclosed a catalytic cascade inter- and intramolecular hydrosilylation mechanism. The catalytic key intermediate silyl-binaphthyldiamine rare-earth hydride has been isolated and structurally characterized.
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Rare-Earth-Catalyzed Selective Hydrosilylation of Iminocyclopropanes: Efficient Access to Azasilacyclopentanes — 科研速览 Science Skim