Acid‐Catalyzed/Mediated Synthesis of Benzo[ d ][1,3]oxathiin‐4‐Ones and Their Deuterated Analogs

A novel synthetic strategy for benzo[ d ][1,3]oxathiin‐4‐ones has been developed using HI as a critical catalyst. A variety of benzo[ d ][1,3]oxathiin‐4‐ones were isolated in excellent yields via the reaction between thiosalicylic acids and aldehydes or ketones. Furthermore, with HBr as an additive, DABCO·CD 2 Cl 2 was utilized as a deuterated methylene (methylene‐ d 2 ) source, enabling the efficient synthesis of deuterated analogs in good yields and excellent deuterium incorporation. This method features broad substrate scope, good functional group tolerance, and gram‐scale scalability, providing a valuable complementary approach for accessing the important benzo[ d ][1,3]oxathiin‐4‐ones and their deuterated analogs.

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Publication Details

Journal
Advanced Synthesis & Catalysis
Published
2026-09-15
DOI
https://doi.org/10.1002/adsc.70764
Primary Topic
Chemical Reactions and Isotopes
Type
article
Field-Weighted Citation Impact
0.00

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article

Acid‐Catalyzed/Mediated Synthesis of Benzo[ d ][1,3]oxathiin‐4‐Ones and Their Deuterated Analogs

Ke Yang, Keyu Chen, Zhengyi Li, Xiaoqiang Sun et al.
Advanced Synthesis & Catalysis
Chemical Reactions and Isotopes
article

Acid‐Catalyzed/Mediated Synthesis of Benzo[ d ][1,3]oxathiin‐4‐Ones and Their Deuterated Analogs

Ke Yang, Keyu Chen, Zhengyi Li, Xiaoqiang Sun, Liling Pan
article en

Abstract

A novel synthetic strategy for benzo[ d ][1,3]oxathiin‐4‐ones has been developed using HI as a critical catalyst. A variety of benzo[ d ][1,3]oxathiin‐4‐ones were isolated in excellent yields via the reaction between thiosalicylic acids and aldehydes or ketones. Furthermore, with HBr as an additive, DABCO·CD 2 Cl 2 was utilized as a deuterated methylene (methylene‐ d 2 ) source, enabling the efficient synthesis of deuterated analogs in good yields and excellent deuterium incorporation. This method features broad substrate scope, good functional group tolerance, and gram‐scale scalability, providing a valuable complementary approach for accessing the important benzo[ d ][1,3]oxathiin‐4‐ones and their deuterated analogs.

Advanced Synthesis & CatalysisVol. 368(18)
Changzhou University (CN)
Changzhou University
Openalex Percentile: Top 13%
Chemical Reactions and Isotopes
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Acid‐Catalyzed/Mediated Synthesis of Benzo[ d ][1,3]oxathiin‐4‐Ones and Their Deuterated Analogs — Ke Yang, Keyu Chen, et al. · Advanced Synthesis & Catalysis (2026) | TGRS Research Map | TGRS