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通过1-炔烃的氢胺化和金属化反应实现四取代炔丙胺的非对映选择性合成及其对映选择性转化为三取代手性丙二烯

Diastereoselective Synthesis of Tetrasubstituted Propargylamines via Hydroamination and Metalation of 1-Alkynes and Their Enantioselective Conversion to Trisubstituted Chiral Allenes.

作者信息

Periasamy Mariappan, Reddy Polimera Obula, Satyanarayana Iddum, Mohan Lakavathu, Edukondalu Athukuri

机构信息

School of Chemistry, University of Hyderabad , Central University P.O., Hyderabad 500046, India.

出版信息

J Org Chem. 2016 Feb 5;81(3):987-99. doi: 10.1021/acs.joc.5b02554. Epub 2016 Jan 12.

Abstract

Reaction of cyclic secondary amines with 1-alkynes and copper(I) chloride at 110-120 °C gives the corresponding alkynylcopper complex, which adds to the iminium ion intermediate formed in situ by hydroamination of 1-alkynes to give the corresponding propargylamine derivatives in up to 94% yield and 99% regioselectivity. The diastereomerically pure chiral propargylamines were obtained in 23-89% yield using optically active 2-benzyl morpholine and N-methyl camphanyl piperazine. These chiral propargylamines are readily converted to the corresponding trisubstitued chiral allenes in 71-89% yields with up to 99% ee upon reaction with ZnBr2 at 120 °C. The results are discussed considering mechanisms involving diastereoselective addition of alkynylcopper complex formed in situ to iminium ions formed in situ regioselectively to produce the corresponding propargylamines, which in turn give the chiral allenes with very high enantioselectivity via an intramolecular 1,5-hydrogen shift in the presence of zinc bromide.

摘要

环状仲胺与1-炔烃及氯化亚铜在110 - 120℃反应生成相应的炔基铜配合物,该配合物会加成到由1-炔烃氢胺化原位形成的亚胺离子中间体上,从而以高达94%的产率和99%的区域选择性得到相应的炔丙胺衍生物。使用光学活性的2-苄基吗啉和N-甲基樟脑基哌嗪,以23 - 89%的产率得到非对映体纯的手性炔丙胺。这些手性炔丙胺在120℃与ZnBr₂反应时,能以71 - 89%的产率、高达99%的对映体过量(ee)轻松转化为相应的三取代手性丙二烯。讨论了相关结果,其涉及原位形成的炔基铜配合物区域选择性地加成到原位形成的亚胺离子上以生成相应的炔丙胺的机制,而这些炔丙胺在溴化锌存在下通过分子内1,5-氢迁移又以非常高的对映选择性生成手性丙二烯。

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