Tandem cyclohexen-3-yne and 1,2,3-cyclohexatriene reactions

There are three classes of neutral 6-membered reactive species, namely didehydrobenzene (benzyne (1)), dihydrobenzenes (cyclohexyne (2) and 1,2-cyclohexadiene (3)), and benzene isomers (cyclohexen-3-yne (4), 1,2,3-cyclohexatriene (5), and 1,2,4-cyclohexatriene (6)). Although intermediates 1-3 have found broad synthetic applications, the benzene isomers 4-6 received only sporadic attention. To further explore their synthetic utility and, more importantly, to uncover their potential in preparing polysubstituted 1,3-cyclohexadienes, we successfully incorporate cyclohexen-3-yne and 1,2,3-cyclohexatriene into several cascade transformations, such as 1,3-diamination, nucleophilic addition-ene reaction, and nucleophilic addition-[4+2] cycloaddition reaction. Additionally, a 1,5-sulfonyl group migration could occur to deliver a sulfone to the C4-position of the 1,3-cyclohexadiene framework. As a result, a series of 1,2-disubstituted, 1,2,3-trisubstituted, 1,2,4-trisubstituted, and 1,2,3,4-tetrasubstituted 1,3-cyclohexadienes bearing polycyclic ring systems can be efficiently prepared. This study offers a distinctive perspective on these aspects of reactive benzene isomers. The authors incorporate cyclohexen-3-yne and 1,2,3-cyclohexatriene, which are reactive intermediates that are not well-studied, into several cascade transformations, such as 1,3-diaminations, nucleophilic addition-ene reactions, and nucleophilic addition-[4+2] cycloaddition reactions.

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Publication Details

Journal
Nature Communications
Published
2026-09-21
DOI
https://doi.org/10.1038/s41467-026-77981-4
Primary Topic
Catalytic Alkyne Reactions
Type
article
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article

Tandem cyclohexen-3-yne and 1,2,3-cyclohexatriene reactions

Yang Li, Wenhao Yin, Li Xu, Ranran Xia et al.
Nature Communications
Catalytic Alkyne Reactions
article

Tandem cyclohexen-3-yne and 1,2,3-cyclohexatriene reactions

Yang Li, Wenhao Yin, Li Xu, Ranran Xia, Lianggui Li
article en

Abstract

There are three classes of neutral 6-membered reactive species, namely didehydrobenzene (benzyne (1)), dihydrobenzenes (cyclohexyne (2) and 1,2-cyclohexadiene (3)), and benzene isomers (cyclohexen-3-yne (4), 1,2,3-cyclohexatriene (5), and 1,2,4-cyclohexatriene (6)). Although intermediates 1-3 have found broad synthetic applications, the benzene isomers 4-6 received only sporadic attention. To further explore their synthetic utility and, more importantly, to uncover their potential in preparing polysubstituted 1,3-cyclohexadienes, we successfully incorporate cyclohexen-3-yne and 1,2,3-cyclohexatriene into several cascade transformations, such as 1,3-diamination, nucleophilic addition-ene reaction, and nucleophilic addition-[4+2] cycloaddition reaction. Additionally, a 1,5-sulfonyl group migration could occur to deliver a sulfone to the C4-position of the 1,3-cyclohexadiene framework. As a result, a series of 1,2-disubstituted, 1,2,3-trisubstituted, 1,2,4-trisubstituted, and 1,2,3,4-tetrasubstituted 1,3-cyclohexadienes bearing polycyclic ring systems can be efficiently prepared. This study offers a distinctive perspective on these aspects of reactive benzene isomers. The authors incorporate cyclohexen-3-yne and 1,2,3-cyclohexatriene, which are reactive intermediates that are not well-studied, into several cascade transformations, such as 1,3-diaminations, nucleophilic addition-ene reactions, and nucleophilic addition-[4+2] cycloaddition reactions.

Nature Communications
Chongqing University (CN)
Openalex Percentile: Top 21%
Catalytic Alkyne Reactions
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Tandem cyclohexen-3-yne and 1,2,3-cyclohexatriene reactions — Yang Li, Wenhao Yin, et al. · Nature Communications (2026) | TGRS Research Map | TGRS