This review focuses on recent developments from our laboratory in the field of radical reactions mediated by the archetypal reductive single electron transfer (SET) reagent, SmI2. Namely, we have expanded the scope of reducible carbonyl moieties to esters and amides and have exploited the resultant ketyl radicals in radical cascade reactions that generate unprecedented scaffolds. Moreover, we have taken the first steps to address the long-standing challenges of catalysis and chiral ligand control associated with the reagent
Ketyl radicals are valuable reactive intermediates for synthesis and are used extensively to constru...
Our studies in the area of single electron transfer (SET) photochemistry have led to the discovery o...
Unsaturated lactones undergo reductive radical cyclizations upon treatment with SmI<sub>2</sub>–H<su...
International audienceThe first detailed theoretical study on the synthetically important electron t...
In little more than twenty-five years, samarium(II) iodide (SmI 2) has become a benchmark reducing a...
Recent work from our laboratories has shown SmI2–H2O to be a versatile, readily-accessible and non-t...
Samarium(II) iodide–water–amine reagents have emerged as some of the most powerful reagents (<i>E</...
Mechanistic details pertaining to the SmI<sub>2</sub>–H<sub>2</sub>O-mediated reduction and reductiv...
Radical reactions offer many advantages over conventional chemical reactions, lending themselves to ...
The reduction of a carbonyl by SmI2–water is the first step in a range of reactions of synthetic imp...
Samarium diiodide (SmI2) is one of the most widely used single-electron reductants available to orga...
Despite the broad utility and application of SmI2in synthesis, the reagent is used in stoichiometric...
From PubMed via Jisc Publications RouterPublication status: ppublishKetyl radicals are valuable reac...
The expedient assembly of complex, natural product-like small molecules can deliver new chemical ent...
Unsaturated, differentially substituted Meldrum’s acid derivatives undergo cascade cyclizations upon...
Ketyl radicals are valuable reactive intermediates for synthesis and are used extensively to constru...
Our studies in the area of single electron transfer (SET) photochemistry have led to the discovery o...
Unsaturated lactones undergo reductive radical cyclizations upon treatment with SmI<sub>2</sub>–H<su...
International audienceThe first detailed theoretical study on the synthetically important electron t...
In little more than twenty-five years, samarium(II) iodide (SmI 2) has become a benchmark reducing a...
Recent work from our laboratories has shown SmI2–H2O to be a versatile, readily-accessible and non-t...
Samarium(II) iodide–water–amine reagents have emerged as some of the most powerful reagents (<i>E</...
Mechanistic details pertaining to the SmI<sub>2</sub>–H<sub>2</sub>O-mediated reduction and reductiv...
Radical reactions offer many advantages over conventional chemical reactions, lending themselves to ...
The reduction of a carbonyl by SmI2–water is the first step in a range of reactions of synthetic imp...
Samarium diiodide (SmI2) is one of the most widely used single-electron reductants available to orga...
Despite the broad utility and application of SmI2in synthesis, the reagent is used in stoichiometric...
From PubMed via Jisc Publications RouterPublication status: ppublishKetyl radicals are valuable reac...
The expedient assembly of complex, natural product-like small molecules can deliver new chemical ent...
Unsaturated, differentially substituted Meldrum’s acid derivatives undergo cascade cyclizations upon...
Ketyl radicals are valuable reactive intermediates for synthesis and are used extensively to constru...
Our studies in the area of single electron transfer (SET) photochemistry have led to the discovery o...
Unsaturated lactones undergo reductive radical cyclizations upon treatment with SmI<sub>2</sub>–H<su...