Microwave irradiation has considerably enhanced the efficiency of the asymmetric transfer hydrogenation of N-(tert-butylsulfinyl)imines in isopropyl alcohol catalyzed by a ruthenium complex bearing the achiral ligand 2-amino-2-methylpropan-1-ol. In addition to shortening reaction times for the transfer hydrogenation processes to only 30 min, the amounts of ruthenium catalyst and isopropyl alcohol can be considerably reduced in comparison with our previous procedure assisted by conventional heating, which diminishes the environmental impact of this new protocol. This methodology can be applied to aromatic, heteroaromatic and aliphatic N-(tert-butylsulfinyl)ketimines, leading, after desulfinylation, to the expected primary amines in excellent...
N-sulfonyl imines are widely used as substrates for a range of transformations. Access to N-sulfonyl...
N-Sulfonyl-1,2-diamine ligands, derived from 1,2-diaminocyclohexane and 1,2-diaminopropane, were imm...
A review on catalytic asymmetric hydrogenation of C=O double bonds is presented in the first chapter...
Since the first reports on the use of microwave irradiation to accelerate organic chemical transform...
In this account, we describe the design, synthesis and applications of tethered versions of the Ru(I...
The use of an enantiomerically pure amino alcohol, coupled to a transfer hydrogenation process, in t...
We thank the Spanish Ministerio de Ciencia e Innovación (MICINN; grant no. CONSOLIDER INGENIO 2010-C...
This thesis deals with ruthenium-catalyzed hydrogen transfer involving amines and imines and is divi...
In these days, asymmetric transfer hydrogenation (ATH) is a very attractive method for synthesis of ...
The reduction of several aromatic nitro compounds to amines by means of the two novel catalytic syst...
The area of chemical research and synthesis increasingly recognises the need for improved technologi...
Asymmetric hydrogen transfer (ATH) is one of the methods of stereoselective reduction of prochiral c...
In this review, we consider the main processes for the asymmetric transfer hydrogenation of ketones ...
The asymmetric transfer hydrogenation (ATH) of α-keto-1,4-diamides using a tethered Ru/TsDPEN cataly...
Highly enantiomerically enriched γ- and δ-lactams have been prepared by a simple and very efficient ...
N-sulfonyl imines are widely used as substrates for a range of transformations. Access to N-sulfonyl...
N-Sulfonyl-1,2-diamine ligands, derived from 1,2-diaminocyclohexane and 1,2-diaminopropane, were imm...
A review on catalytic asymmetric hydrogenation of C=O double bonds is presented in the first chapter...
Since the first reports on the use of microwave irradiation to accelerate organic chemical transform...
In this account, we describe the design, synthesis and applications of tethered versions of the Ru(I...
The use of an enantiomerically pure amino alcohol, coupled to a transfer hydrogenation process, in t...
We thank the Spanish Ministerio de Ciencia e Innovación (MICINN; grant no. CONSOLIDER INGENIO 2010-C...
This thesis deals with ruthenium-catalyzed hydrogen transfer involving amines and imines and is divi...
In these days, asymmetric transfer hydrogenation (ATH) is a very attractive method for synthesis of ...
The reduction of several aromatic nitro compounds to amines by means of the two novel catalytic syst...
The area of chemical research and synthesis increasingly recognises the need for improved technologi...
Asymmetric hydrogen transfer (ATH) is one of the methods of stereoselective reduction of prochiral c...
In this review, we consider the main processes for the asymmetric transfer hydrogenation of ketones ...
The asymmetric transfer hydrogenation (ATH) of α-keto-1,4-diamides using a tethered Ru/TsDPEN cataly...
Highly enantiomerically enriched γ- and δ-lactams have been prepared by a simple and very efficient ...
N-sulfonyl imines are widely used as substrates for a range of transformations. Access to N-sulfonyl...
N-Sulfonyl-1,2-diamine ligands, derived from 1,2-diaminocyclohexane and 1,2-diaminopropane, were imm...
A review on catalytic asymmetric hydrogenation of C=O double bonds is presented in the first chapter...