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分子内尼古拉斯反应在杂并吲哚、三唑和异香豆素的偕二炔中的应用。

Intramolecular Nicholas Reactions in the Synthesis of Heteroenediynes Fused to Indole, Triazole, and Isocoumarin.

机构信息

Institute of Chemistry, Saint Petersburg State University (SPbU), Universitetskaya nab. 7/9, 199034 Saint Petersburg, Russia.

Institute of Organic Chemistry (IOC), Karlsruhe Institute of Technology (KIT), Fritz-Haber-Weg 6, 76131 Karlsruhe, Germany.

出版信息

J Org Chem. 2020 Jul 17;85(14):9001-9014. doi: 10.1021/acs.joc.0c00930. Epub 2020 Jun 24.

Abstract

The applicability of an intramolecular Nicholas reaction for the preparation of 10-membered O- and N-enediynes fused to indole, 1,2,3-triazole, and isocoumarin was investigated. The general approach to acyclic enediyne precursors fused to heterocycles includes inter- and intramolecular buta-1,3-diyne cyclizations with the formation of iodoethynylheterocycles, followed by Sonogashira coupling. The nature of both a heterocycle and a nucleophilic group affects the possibility of a 10-membered ring closure by the Nicholas reaction. Among oxacycles, an isocoumarin-fused enediyne was obtained. In the case of O-enediyne annulated with indole, instead of the formation of a 10-membered cycle, BF-promoted addition of an OH-group to the proximal triple bond at the C3 position afforded dihydrofuryl-substituted indole. For 1,2,3-triazole-fused analogues, using NH-Ts as a nucleophilic functional group allowed obtaining 10-membered azaenediyne, while the substrate with a hydroxyl group gave only traces of the desired 10-membered oxacycle. An improved method for the deprotection of Co-complexes of cyclic enediynes using tetrabutylammonium fluoride in an acetone/water mixture and the investigation of the 10-membered enediynes' reactivity in the Bergman cyclization are also reported. In the solid state, all synthesized iodoethynylheterocycles were found to be involved in halogen bond (XB) formation with either O or N atoms as XB acceptors.

摘要

研究了分子内 Nicholas 反应在制备与吲哚、1,2,3-三唑和异吲哚啉融合的 10 元 O-和 N-烯二炔中的应用。无环烯二炔前体与杂环融合的一般方法包括与碘代乙炔杂环形成的分子内和分子间丁二炔环化,然后进行 Sonogashira 偶联。杂环和亲核基团的性质都会影响 Nicholas 反应形成 10 元环的可能性。在杂环中,得到了与异吲哚啉融合的烯二炔。在与吲哚环合的 O-烯二炔的情况下,不是形成 10 元环,而是 BF 促进的在 C3 位置的近端三键上的 OH 基团加成,得到二氢呋喃取代的吲哚。对于与 1,2,3-三唑融合的类似物,使用 NH-Ts 作为亲核官能团可以得到 10 元氮杂烯二炔,而带有羟基的底物只得到痕量所需的 10 元氧杂环。还报道了一种使用四丁基氟化铵在丙酮/水混合物中脱保护环状烯二炔钴配合物的改进方法,并研究了 10 元烯二炔在 Bergman 环化反应中的反应性。在固态下,所有合成的碘代乙炔杂环都被发现与 O 或 N 原子形成卤键 (XB),作为 XB 受体。

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