Despite the broad utility and application of SmI2in synthesis, the reagent is used in stoichiometric amounts and has a high molecular weight, resulting in a large amount of material being used for reactions requiring one or more equivalents of electrons. We report mechanistic studies on catalytic reactions of Sm(II) employing a terminal magnesium reductant and trimethyl silyl chloride in concert with a non-coordinating proton donor source. Reactions using this approach permitted reductions with as little as 1 mol% Sm. The mechanistic approach enabled catalysis employing HMPA as a ligand, facilitating the development of catalytic Sm(II) 5-exo-trig ketyl olefin cyclization reactions
Reduction of N,N′-di(2,6-diisopropylphenyl)carbodiimide (DippNCNDipp) by [SmL2(thf)2] (1) (L = N,N′-...
Samarium(II) iodide (SmI<sub>2</sub>) is one of the most important reducing agents in organic synth...
Ligation plays a multifaceted role in the chemistry of SmI2. Depending on the ligand, two of its maj...
Samarium diiodide (SmI2) is one of the most widely used single-electron reductants available to orga...
This thesis describes the development of methods using divalent samarium reagents in organic synthes...
In little more than twenty-five years, samarium(II) iodide (SmI 2) has become a benchmark reducing a...
Samarium metal has been used for the first time as electrode material to perform as an efficient and...
A tag removal-cyclisation sequence is described that is initiated by reduction using a Sm(II) specie...
This review focuses on recent developments from our laboratory in the field of radical reactions med...
Mixing Sml(2) and NaN(TMS)(2) generates in situ an efficient catalyst that promotes the intramolecul...
Samarium(II) iodide–water–amine reagents have emerged as some of the most powerful reagents (<i>E</...
SmI2(THF)5 acted as a reducing agent in the reaction with phenylenebis(3,5-But4salicylidene)iminato ...
Attempts to stabilise a TmII metal centre with the bulky β-diketiminate ligand HC[C(Me)=N(DIPP)]2 (B...
Recent work from our laboratories has shown SmI2–H2O to be a versatile, readily-accessible and non-t...
This study presents three efficient methods for five‐membered ring carbocycle synthesis using samari...
Reduction of N,N′-di(2,6-diisopropylphenyl)carbodiimide (DippNCNDipp) by [SmL2(thf)2] (1) (L = N,N′-...
Samarium(II) iodide (SmI<sub>2</sub>) is one of the most important reducing agents in organic synth...
Ligation plays a multifaceted role in the chemistry of SmI2. Depending on the ligand, two of its maj...
Samarium diiodide (SmI2) is one of the most widely used single-electron reductants available to orga...
This thesis describes the development of methods using divalent samarium reagents in organic synthes...
In little more than twenty-five years, samarium(II) iodide (SmI 2) has become a benchmark reducing a...
Samarium metal has been used for the first time as electrode material to perform as an efficient and...
A tag removal-cyclisation sequence is described that is initiated by reduction using a Sm(II) specie...
This review focuses on recent developments from our laboratory in the field of radical reactions med...
Mixing Sml(2) and NaN(TMS)(2) generates in situ an efficient catalyst that promotes the intramolecul...
Samarium(II) iodide–water–amine reagents have emerged as some of the most powerful reagents (<i>E</...
SmI2(THF)5 acted as a reducing agent in the reaction with phenylenebis(3,5-But4salicylidene)iminato ...
Attempts to stabilise a TmII metal centre with the bulky β-diketiminate ligand HC[C(Me)=N(DIPP)]2 (B...
Recent work from our laboratories has shown SmI2–H2O to be a versatile, readily-accessible and non-t...
This study presents three efficient methods for five‐membered ring carbocycle synthesis using samari...
Reduction of N,N′-di(2,6-diisopropylphenyl)carbodiimide (DippNCNDipp) by [SmL2(thf)2] (1) (L = N,N′-...
Samarium(II) iodide (SmI<sub>2</sub>) is one of the most important reducing agents in organic synth...
Ligation plays a multifaceted role in the chemistry of SmI2. Depending on the ligand, two of its maj...