Two recently reported air- and water-stable di-Rh complexes based on 1,3-bis(3′-butylbenzimidazol-2′-ylidene)benzene were utilized as catalysts for hydrosilylation. Among the substrates investigated were aldehydes, ketones, α,β-unsaturated carbonyls, acyl chlorides, nitriles, alkenes, nitro groups, isocyanates, and tertiary amides. Additionally, carbon dioxide underwent hydrosilylation to produce dimethylphenylsilylformate. The catalysts compared well to other previously reported hydrosilylation catalysts, and the Rh–Cl catalyst was found to be faster and more selective than the Rh–I complex in each case
International audienceThe commercially available rhodium(I) complex [RhCl(CO)2]2 (1) was shown to be...
[Re(PiPr3)2(NO)2]+[B(C6F5)4]? (1) and the new NO-functionalized compounds [Re(H)(PiPr3)2(NO)(NOB(C6F...
International audienceHydrosilylation is an important process, not only in the silicon industry to p...
Alkene hydrosilylation and dehydrogenative silylation reactions, mediated by [Rh(cod)(NHC)(OH)] comp...
Alkene hydrosilylation and dehydrogenative silylation reactions, mediated by [Rh(cod)(NHC)(OH)] comp...
Alkene hydrosilylation and dehydrogenative silylation reactions, mediated by [Rh(cod)(NHC)(OH)] comp...
To explore how to access bimetallic catalysts that can outperform their monometallic analogues, a se...
The complex [Rh((IBu)-Bu-t)(2)HCl] has been shown to be an active catalyst in the hydrosilylation of...
Rhodium(III) complexes comprising monoanionic C,C,C-tridentate dicarbene ligands activate Si–H bonds...
The complex [Rh((IBu)-Bu-t)(2)HCl] has been shown to be an active catalyst in the hydrosilylation of...
The catalytic activity of tris(pentanedionato)rhodium(III), (or rhodium(III) acetylacetonate) (I) ha...
Novel rhodium-1,3-dialkylperhydrobenzimidazolin-2-ylidene (2a,b) and 1,3-dialkylimidazolin-2-ylidene...
Novel rhodium-1,3-dialkylperhydrobenzimidazolin-2-ylidene (2a,b) and 1,3-dialkylimidazolin-2-ylidene...
Two phosphine-rhodium(II) complexes, bis(tris-o-tolylphosphine)dichlororhodium(II) and bis(tricycloh...
To explore how to access bimetallic catalysts that can outperform their monometallic analogues, a se...
International audienceThe commercially available rhodium(I) complex [RhCl(CO)2]2 (1) was shown to be...
[Re(PiPr3)2(NO)2]+[B(C6F5)4]? (1) and the new NO-functionalized compounds [Re(H)(PiPr3)2(NO)(NOB(C6F...
International audienceHydrosilylation is an important process, not only in the silicon industry to p...
Alkene hydrosilylation and dehydrogenative silylation reactions, mediated by [Rh(cod)(NHC)(OH)] comp...
Alkene hydrosilylation and dehydrogenative silylation reactions, mediated by [Rh(cod)(NHC)(OH)] comp...
Alkene hydrosilylation and dehydrogenative silylation reactions, mediated by [Rh(cod)(NHC)(OH)] comp...
To explore how to access bimetallic catalysts that can outperform their monometallic analogues, a se...
The complex [Rh((IBu)-Bu-t)(2)HCl] has been shown to be an active catalyst in the hydrosilylation of...
Rhodium(III) complexes comprising monoanionic C,C,C-tridentate dicarbene ligands activate Si–H bonds...
The complex [Rh((IBu)-Bu-t)(2)HCl] has been shown to be an active catalyst in the hydrosilylation of...
The catalytic activity of tris(pentanedionato)rhodium(III), (or rhodium(III) acetylacetonate) (I) ha...
Novel rhodium-1,3-dialkylperhydrobenzimidazolin-2-ylidene (2a,b) and 1,3-dialkylimidazolin-2-ylidene...
Novel rhodium-1,3-dialkylperhydrobenzimidazolin-2-ylidene (2a,b) and 1,3-dialkylimidazolin-2-ylidene...
Two phosphine-rhodium(II) complexes, bis(tris-o-tolylphosphine)dichlororhodium(II) and bis(tricycloh...
To explore how to access bimetallic catalysts that can outperform their monometallic analogues, a se...
International audienceThe commercially available rhodium(I) complex [RhCl(CO)2]2 (1) was shown to be...
[Re(PiPr3)2(NO)2]+[B(C6F5)4]? (1) and the new NO-functionalized compounds [Re(H)(PiPr3)2(NO)(NOB(C6F...
International audienceHydrosilylation is an important process, not only in the silicon industry to p...