分子内力
立体中心
化学
钯
烯烃
催化作用
卡宾
还原消去
氧化加成
芳基
药物化学
对映选择合成
催化循环
立体化学
组合化学
有机化学
烷基
作者
Dmitry Katayev,Yi‐Xia Jia,Akhilesh K. Sharma,Dipshikha Banerjee,Céline Besnard,Raghavan B. Sunoj,E. Peter Kündig
标识
DOI:10.1002/chem.201301572
摘要
Abstract Palladium complexes incorporating chiral N‐heterocyclic carbene (NHC) ligands catalyze the asymmetric intramolecular α‐arylation of amides producing 3,3‐disubstituted oxindoles. Comprehensive DFT studies have been performed to gain insight into the mechanism of this transformation. Oxidative addition is shown to be rate‐determining and reductive elimination to be enantioselectivity‐determining. The synthesis of seven new NHC ligands is detailed and their performance is compared. One of them, L8 , containing a t Bu and a 1‐naphthyl group at the stereogenic centre, proved superior and was very efficient in the asymmetric synthesis of fifteen new spiro‐oxindoles and three azaspiro‐oxindoles often in high yields (up to 99 %) and enantioselectivities (up to 97 % ee ; ee =enantiomeric excess). Three palladacycle intermediates resulting from the oxidative addition of [Pd(NHC)] into the aryl halide bond were isolated and structurally characterized (X‐ray). Using these intermediates as catalysts showed alkene additives to play an important role in increasing turnover number and frequency.
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