Pyrinap ligands for enantioselective syntheses of amines

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作者
Qi Liu
Haibo Xu
Yuling Li
Yuan Yao
Xue Zhang
Yinlong Guo
Shengming Ma
机构
[1] Chinese Academy of Sciences,State Key Laboratory of Organometallic Chemistry, Shanghai Institute of Organic Chemistry
[2] University of Chinese Academy of Sciences,Research Center for Molecular Recognition and Synthesis, Department of Chemistry
[3] Fudan University,undefined
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Amines are a class of compounds of essential importance in organic synthesis, pharmaceuticals and agrochemicals. Due to the importance of chirality in many practical applications of amines, enantioselective syntheses of amines are of high current interest. Here, we wish to report the development of (R,Ra)-N-Nap-Pyrinap and (R,Sa)-N-Nap-Pyrinap ligands working with CuBr to catalyze the enantioselective A3-coupling of terminal alkynes, aldehydes, and amines affording optically active propargylic amines, which are platform molecules for the effective derivatization to different chiral amines. With a catalyst loading as low as 0.1 mol% even in gram scale reactions, this protocol is applied to the late stage modification of some drug molecules with highly sensitive functionalities and the asymmetric synthesis of the tubulin polymerization inhibitor (S)-(-)-N-acetylcolchinol in four steps. Mechanistic studies reveal that, unlike reported catalysts, a monomeric copper(I) complex bearing a single chiral ligand is involved in the enantioselectivity-determining step.
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