硅氢加成
对映选择合成
有机硅
催化作用
立体中心
化学
手性(物理)
钯
乙烯基硅烷
磷酰胺
硅烷化
有机化学
组合化学
寡核苷酸
夸克
手征对称破缺
Nambu–Jona Lasinio模型
物理
生物化学
量子力学
DNA
作者
Xing-Wei Gu,Yu-Li Sun,Jia-Le Xie,Xing-Ben Wang,Zheng Xu,Guan-Wu Yin,Li Li,Ke‐Fang Yang,Li‐Wen Xu
标识
DOI:10.1038/s41467-020-16716-5
摘要
Abstract Hydrosilylation of unsaturated carbon-carbon bonds with hydrosilanes is a very important process to access organosilicon compounds and ranks as one of the most fundamental reactions in organic chemistry. However, catalytic asymmetric hydrosilylation of activated alkenes and internal alkenes has proven elusive, due to competing reduction of carbon-carbon double bond or isomerization processes. Herein, we report a highly enantioselective Si-C coupling by hydrosilylation of carbonyl-activated alkenes using a palladium catalyst with a chiral TADDOL-derived phosphoramidite ligand, which inhibits O-hydrosilylation/olefin reduction. The stereospecific Si-C coupling/hydrosilylation of maleimides affords a series of silyl succinimides with up to 99% yield, >99:1 diastereoselectivity and >99:1 enantioselectivity. The high degree of stereoselectivity exerts remote control of axial chirality, leading to functionalized, axially chiral succinimides which are versatile building blocks. The product utility is highlighted by the enantioselective construction of N-heterocycles bearing up to three stereocenters.
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