Divergent Single‐Oxygen Transmutation of Furans

ABSTRACT Despite the prevalence of furans in organic chemistry, their direct conversion into diverse heterocycles via oxygen transmutation remains a formidable challenge. This limitation is primarily attributed to the robust endocyclic C—O bonds, its aromaticity, and the lack of strategies to activate inert oxygen atoms. In this study, we report a lithium‐mediated strategy that enables the divergent transmutation of furan oxygen atoms. By employing a mechanochemical ball‐milling protocol, we achieve this transformation under mild and operationally simple conditions, significantly enhancing the efficiency compared to conventional solution‐phase methods. This approach enables the precise replacement of oxygen with diverse elements—including silicon, carbon, selenium, phosphorus, germanium, and titanium—via deoxygenatively dilithiated intermediates that react in situ with various electrophiles, thereby providing direct access to a library of valuable heterocycles. This work highlights a versatile platform for molecular diversification with endocyclic transmutation, demonstrating that mechanochemistry can serve as an operationally efficient and time‐saving strategy for complex heterocycle synthesis.

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Publication Details

Journal
Angewandte Chemie
Published
2026-09-19
DOI
https://doi.org/10.1002/ange.4084841
Primary Topic
Synthesis and characterization of novel inorganic/organometallic compounds
Type
article
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Divergent Single‐Oxygen Transmutation of Furans

Hideki Yorimitsu, Takashi Kurogi, Yuxuan Yang, Hao Wei et al.
Angewandte Chemie
Synthesis and characterization of novel inorganic/organometallic compounds
article

Divergent Single‐Oxygen Transmutation of Furans

Hideki Yorimitsu, Takashi Kurogi, Yuxuan Yang, Hao Wei, Hong Lu, Yi He, Yihang Zhang, Yuta Kato
article en

Abstract

ABSTRACT Despite the prevalence of furans in organic chemistry, their direct conversion into diverse heterocycles via oxygen transmutation remains a formidable challenge. This limitation is primarily attributed to the robust endocyclic C—O bonds, its aromaticity, and the lack of strategies to activate inert oxygen atoms. In this study, we report a lithium‐mediated strategy that enables the divergent transmutation of furan oxygen atoms. By employing a mechanochemical ball‐milling protocol, we achieve this transformation under mild and operationally simple conditions, significantly enhancing the efficiency compared to conventional solution‐phase methods. This approach enables the precise replacement of oxygen with diverse elements—including silicon, carbon, selenium, phosphorus, germanium, and titanium—via deoxygenatively dilithiated intermediates that react in situ with various electrophiles, thereby providing direct access to a library of valuable heterocycles. This work highlights a versatile platform for molecular diversification with endocyclic transmutation, demonstrating that mechanochemistry can serve as an operationally efficient and time‐saving strategy for complex heterocycle synthesis.

Angewandte Chemie
Ministry of Education of the People's Republic of China (CN), Kyoto University (JP), MetaMateria (United States) (US)
Openalex Percentile: Top 25%
Synthesis and characterization of novel inorganic/organometallic compounds
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Divergent Single‐Oxygen Transmutation of Furans — Hideki Yorimitsu, Takashi Kurogi, et al. · Angewandte Chemie (2026) | TGRS Research Map | TGRS