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通过末端炔烃的烯丙基化合成烯丙基取代的哌啶酸。

Synthesis of Allene Substituted Nipecotic Acids by Allenylation of Terminal Alkynes.

机构信息

Department of Pharmacy, Center for Drug Research, Ludwig-Maximilians-Universität München , Butenandtstrasse 5-13, D-81377 Munich, Germany.

出版信息

J Org Chem. 2017 Aug 18;82(16):8371-8388. doi: 10.1021/acs.joc.7b00630. Epub 2017 Jul 27.

Abstract

The relative reactivities of several secondary amines serving as hydride donors in propargylic amines undergoing a [1,5]-hydride transfer reaction to yield the respective terminal and 1,3-disubstituted allenes were studied. For this study, a two-step procedure was employed. At first, the synthesis of propargylic amines via the Cu-catalyzed aldehyde-alkyne-amine reactions (A coupling) was accomplished. The obtained propargylic amines were subsequently transformed to the desired allenes under CdI or ZnI catalysis. As a result, among the various secondary amines employed, differing in steric bulk, electronic nature, and conformational properties, allyl(tert-butyl)amine was found to be the best hydride donor for the synthesis of terminal allenes. For the synthesis of 1,3-disubstituted allenes, the propyne derivatives containing either a allyl(tert-butyl)amine or a 1,2,3,6-tetrahydropyridine unit in propargylic position performed best. Finally, with the developed procedure, nipecotic acid derivatives containing an N-allenyl substituent were synthesized with good yields using either ZnI as catalyst for the preparation of 1-substituted or CdI for the synthesis of 1,3-disubstitued allenes.

摘要

几种仲胺作为供氢体在丙炔胺中进行[1,5]-氢转移反应生成相应的末端和 1,3-二取代烯丙基的相对反应性进行了研究。为此研究采用了两步法。首先,通过 Cu 催化的醛-炔-胺反应(A 偶联)完成了丙炔胺的合成。然后,在 CdI 或 ZnI 催化下,将得到的丙炔胺转化为所需的烯丙基。结果表明,在所使用的各种仲胺中,不同的空间位阻、电子性质和构象性质,烯丙基(叔丁基)胺是合成末端烯丙基的最佳供氢体。对于 1,3-二取代烯丙基的合成,在丙炔位置含有烯丙基(叔丁基)胺或 1,2,3,6-四氢吡啶单元的丙炔衍生物表现出最佳性能。最后,利用开发的方法,使用 ZnI 作为制备 1-取代产物的催化剂或 CdI 作为合成 1,3-二取代烯丙基的催化剂,以良好的收率合成了含有 N-烯丙基取代基的烟碱酸衍生物。

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