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利用3-甲氧基苯炔或3-硅基苯炔在亲核试剂与周环反应伙伴之间进行的可切换化学选择性芳炔反应。

Switchable chemoselective aryne reactions between nucleophiles and pericyclic reaction partners using either 3-methoxybenzyne or 3-silylbenzyne.

作者信息

Tan Hongcheng, Yu Shuxin, Yuan Xiaoling, Chen Liyuan, Shan Chunhui, Shi Jiarong, Li Yang

机构信息

School of Chemistry and Chemical Engineering, Chongqing University, 174 Shazheng Street, Chongqing, 400030, PR China.

College of Chemistry, Chongqing Normal University, Chongqing, 401331, PR China.

出版信息

Nat Commun. 2024 Apr 30;15(1):3665. doi: 10.1038/s41467-024-47952-8.

Abstract

Arynes are known to serve as highly reactive benzene-based synthons, which have gained numerous successes in preparing functionalized arenes. Due to the superb electrophilic nature of these fleeting species, however, it is challenging to modulate the designated aryne transformation chemoselectively, when substrates possess multiple competing reaction sites. Here, we showcase our effort to manipulate chemoselective control between two major types of aryne transformations using either 3-methoxybenzyne or 3-silylbenzyne, where nucleophilic addition-triggered reactions and non-polar pericyclic reactions could be differentiated. This orthogonal chemoselective protocol is found to be applicable between various nucleophiles, i.e., imidazole, N-tosylated/N-alkyl aniline, phenol, and alcohol, and an array of pericyclic reaction partners, i.e., furan, cyclopentadiene, pyrrole, cycloheptatrienone, and cyclohexene. Beyond arylation reactions, C-N bond insertion, Truce-Smiles rearrangement, and nucleophilic annulation are appropriate reaction modes as well. Moreover, this chemoselective protocol can find potential synthetic application.

摘要

芳炔作为高活性的基于苯的合成子而为人所知,它们在制备官能化芳烃方面已取得诸多成功。然而,由于这些瞬态物种具有超强的亲电性质,当底物具有多个相互竞争的反应位点时,要化学选择性地调控指定的芳炔转化具有挑战性。在此,我们展示了我们利用3-甲氧基苯炔或3-硅基苯炔来操控两种主要类型芳炔转化之间的化学选择性控制的努力,其中亲核加成引发的反应和非极性周环反应能够得以区分。这种正交化学选择性方案被发现适用于各种亲核试剂,即咪唑、N-甲苯磺酰化/N-烷基苯胺、苯酚和醇,以及一系列周环反应伙伴,即呋喃、环戊二烯、吡咯、环庚三烯酮和环己烯。除了芳基化反应之外,C-N键插入、特鲁茨-斯迈尔斯重排和亲核环化也是合适的反应模式。此外,这种化学选择性方案具有潜在的合成应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d3c7/11063064/121426d3ea7e/41467_2024_47952_Fig1_HTML.jpg

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