Photochemical strategies in divalent samarium catalysis

Divalent samarium reagents, particularly samarium diiodide (SmI 2 ), have long been recognized as the most powerful and versatile single-electron reductants in organic synthesis. Several catalytic strategies have been developed for Sm(II) chemistry over the past three decades, including approaches based on metal co-reductants, electrochemical reduction, and radical relay mechanisms. Photochemical strategies have recently emerged as new platforms for catalytic Sm(II) chemistry, leading to the development of a broad range of reductive transformations. This review highlights the recent progress in the photochemical generation of Sm(II) species and their applications in organic synthesis.

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Publication Details

Journal
Beilstein Journal of Organic Chemistry
Published
2026-09-25
DOI
https://doi.org/10.3762/bjoc.22.105
Primary Topic
Radical Photochemical Reactions
Type
article
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article

Photochemical strategies in divalent samarium catalysis

Tetsuhiro Nemoto, Takahito Kuribara
Beilstein Journal of Organic Chemistry
Radical Photochemical Reactions
article

Photochemical strategies in divalent samarium catalysis

Tetsuhiro Nemoto, Takahito Kuribara
article en

Abstract

Divalent samarium reagents, particularly samarium diiodide (SmI 2 ), have long been recognized as the most powerful and versatile single-electron reductants in organic synthesis. Several catalytic strategies have been developed for Sm(II) chemistry over the past three decades, including approaches based on metal co-reductants, electrochemical reduction, and radical relay mechanisms. Photochemical strategies have recently emerged as new platforms for catalytic Sm(II) chemistry, leading to the development of a broad range of reductive transformations. This review highlights the recent progress in the photochemical generation of Sm(II) species and their applications in organic synthesis.

Beilstein Journal of Organic ChemistryVol. 22
Openalex Percentile: Top 22%
Radical Photochemical Reactions
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