Recent Advances in the Use of Diorganyl Diselenides as Versatile Catalysts.

Molecules

Laboratório de Síntese Orgânica Limpa (LASOL), Centro de Ciências Químicas, Farmacêuticas e de Alimentos (CCQFA), Universidade Federal de Pelotas (UFPel), Pelotas 96010-900, Brazil.

Published: September 2023

AI Article Synopsis

  • Organoselenium compounds are gaining importance in synthetic chemistry due to their roles as both electrophiles and nucleophiles, as well as their effectiveness as catalysts.
  • These catalysts offer benefits such as high efficiency, mild conditions, strong functional compatibility, and great selectivity, often paired with inorganic and organic oxidants to regenerate active catalytic species.
  • The review covers five years of research on diorganyl diselenide as a selenium-based catalyst, organized into four key sections: cyclisation reactions, addition and oxidative functionalisation, oxidation and reduction reactions, and reactions involving phosphorus-containing materials.

Article Abstract

The importance of organoselenium compounds has been increasing in synthetic chemistry. These reagents are well-known as electrophiles and nucleophiles in many organic transformations, and in recent years, their functionality as catalysts has also been largely explored. The interest in organoselenium-based catalysts is due to their high efficacy, mild reaction conditions, strong functional compatibility, and great selectivity. Allied to organoselenium catalysts, the use of inorganic and organic oxidants that act by regenerating the catalytic species for the reaction pathway is common. Here, we provide a comprehensive review of the last five years of organic transformations promoted by diorganyl diselenide as a selenium-based catalyst. This report is divided into four sections: (1) cyclisation reactions, (2) addition reactions and oxidative functionalisation, (3) oxidation and reduction reactions, and (4) reactions involving phosphorus-containing starting materials.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10534850PMC
http://dx.doi.org/10.3390/molecules28186614DOI Listing

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