Institute of Engineering Innovation, School of Engineering, The University of Tokyo, Yayoi, Bunkyo-ku, Tokyo 113-8656, Japan.
J Am Chem Soc. 2010 Aug 4;132(30):10592-608. doi: 10.1021/ja1047494.
The scope and limitations of the copper-catalyzed propargylic amination of various propargylic esters with amines are presented, where optically active diphosphines such as Cl-MeO-BIPHEP and BINAP work as good chiral ligands. A variety of secondary amines are available as nucleophiles for this catalytic reaction to give the corresponding propargylic amines with a high enantioselectivity. The results of some stoichiometric and catalytic reactions indicate that the catalytic amination proceeds via copper-allenylidene complexes formed in situ, where the attack of amines to the electrophilic gamma-carbon atom in the allenylidene complex is an important step for the stereoselection. Investigation of the relative rate constants for the reaction of several para-substituted propargylic acetates with N-methylanilines reveals that the formation of the copper-allenylidene complexes is involved in the rate-determining step. The result of the density functional theory calculation on a model reaction also supports the proposed reaction pathway involving copper-allenylidene complexes as key intermediates. The catalytic procedure presented here provides a versatile and direct method for the preparation of a variety of chiral propargylic amines.
本文介绍了铜催化的各种炔丙酯与胺的炔丙基胺化反应的范围和局限性,其中手性二膦配体如 Cl-MeO-BIPHEP 和 BINAP 可以很好地发挥作用。对于这种催化反应,各种仲胺都可以作为亲核试剂,得到相应的炔丙基胺,具有高对映选择性。一些计量和催化反应的结果表明,催化胺化反应通过原位形成的铜烯丙基络合物进行,其中胺对烯丙基络合物中亲电 γ-碳原子的攻击是立体选择性的重要步骤。对几种对位取代的炔丙基醋酸盐与 N-甲基苯胺的反应的相对速率常数的研究表明,铜烯丙基络合物的形成涉及速率决定步骤。模型反应的密度泛函理论计算结果也支持了涉及铜烯丙基络合物作为关键中间体的反应途径。本文提出的催化方法为制备各种手性炔丙基胺提供了一种通用且直接的方法。