K2S-Mediated Tandem Selenylation and Cyclization of CaC2 with Diselenides: Synthesis of 2-Methylbenzoselenazole

Abstract A concise and efficient one-step strategy for the synthesis of 2-methylbenzoselenazoles has been developed using K2S-mediated reaction of diselenides with calcium carbide (CaC2) as a solid acetylene source. This method features a novel Se–S dynamic exchange mechanism, wherein K2S cleaves the Se–Se bond of diselenides through an S2–-mediated pathway to generate selenium anions. These anions subsequently react with in situ-generated acetylene to form vinyl selenides. The trisulfur radical anion (S3•–) derived from K2S then activates the vinyl group, facilitating the key intramolecular cyclization to afford 2-methylbenzoselenazole products. Mechanistic studies, including HRMS, 1H NMR, and control experiments, support the proposed pathway. Moreover, the demethylation of 6-methoxy-2-methylbenzoselenazole readily converts the methoxy group into a hydroxy functionality, enabling access to versatile building blocks bearing clickable alkynes, nucleophile-sensitive bromoalkyl groups, and hydrolyzable esters for advanced applications. This work represents the first application of a K2S-mediated dynamic interchange reaction of diselenides for constructing selenium-containing heterocycles, offering a promising and sustainable route to synthesize biologically relevant benzoselenazole derivatives.

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Publication Details

Journal
The Journal of Organic Chemistry
Published
2026-09-22
DOI
https://doi.org/10.1021/acs.joc.6c01653
Primary Topic
Organoselenium and organotellurium chemistry
Type
article
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K2S-Mediated Tandem Selenylation and Cyclization of CaC2 with Diselenides: Synthesis of 2-Methylbenzoselenazole

Tian‐Xing Zhang, Xiaowei Zhang, Yuwei Wang, Ning Zhu et al.
The Journal of Organic Chemistry
Organoselenium and organotellurium chemistry
article

K2S-Mediated Tandem Selenylation and Cyclization of CaC2 with Diselenides: Synthesis of 2-Methylbenzoselenazole

Tian‐Xing Zhang, Xiaowei Zhang, Yuwei Wang, Ning Zhu, Qingxiang Guo, Hui-Min Liang
article en

Abstract

Abstract A concise and efficient one-step strategy for the synthesis of 2-methylbenzoselenazoles has been developed using K2S-mediated reaction of diselenides with calcium carbide (CaC2) as a solid acetylene source. This method features a novel Se–S dynamic exchange mechanism, wherein K2S cleaves the Se–Se bond of diselenides through an S2–-mediated pathway to generate selenium anions. These anions subsequently react with in situ-generated acetylene to form vinyl selenides. The trisulfur radical anion (S3•–) derived from K2S then activates the vinyl group, facilitating the key intramolecular cyclization to afford 2-methylbenzoselenazole products. Mechanistic studies, including HRMS, 1H NMR, and control experiments, support the proposed pathway. Moreover, the demethylation of 6-methoxy-2-methylbenzoselenazole readily converts the methoxy group into a hydroxy functionality, enabling access to versatile building blocks bearing clickable alkynes, nucleophile-sensitive bromoalkyl groups, and hydrolyzable esters for advanced applications. This work represents the first application of a K2S-mediated dynamic interchange reaction of diselenides for constructing selenium-containing heterocycles, offering a promising and sustainable route to synthesize biologically relevant benzoselenazole derivatives.

The Journal of Organic Chemistry
Inner Mongolia University (CN)
Responsible consumption and production
Openalex Percentile: Top 12%
Organoselenium and organotellurium chemistry
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K2S-Mediated Tandem Selenylation and Cyclization of CaC2 with Diselenides: Synthesis of 2-Methylbenzoselenazole — Tian‐Xing Zhang, Xiaowei Zhang, et al. · The Journal of Organic Chemistry (2026) | TGRS Research Map | TGRS