An iridium-catalyzed, highly efficient, and site-selective deoxygenation of primary, secondary, and tertiary alcohols has been realized, under the assistance of a 4-(N-substituted amino)aryl directing group. Only the hydroxyl adjacent to the directing group can be deoxygenated. The deoxygenation is performed in water, with formic acid as both the promoter and hydride donor. Excellent yields and functionality tolerance, as well as high efficiency (S/C up to 1 000 000, TOF up to 445 000 h–1), are obtained. The kinetic isotope effect studies show that hydride formation is the rate-determining step, and the deoxygenation follows an SN1-type pathway. The deoxygenation protocol has been demonstrated useful in the structural modification of natur...
The bmpi (1,3-bis(6′-methyl-2′-pyridylimino)isoindoline) pincer Ru(II) hydride complex catalyzes ...
The chemoselective dehydrogenation of glycerol was catalyzed by organoiridium derivatives of the typ...
Acceptorless dehydrogenation into carbonyls and molecular hydrogen is an attractive strategy to valo...
A new catalytic system that employs water as an environmentally friendly solvent for the dehydrogena...
A highly efficient system for the catalytic deuteration of α and β CH bonds of primary and secondary...
An iridium(III) pentamethylcyclopentadienyl catalyst supported by 6,6′-dihydroxy-2,2′-bipyridine di...
We introduce iridium-based conditions for the conversion of primary alcohols to potassium carboxylat...
A new catalytic system that employs water as an environmentally friendly solvent for the dehydrogena...
The preparation of a <i>N</i>,<i>N</i>,<i>N</i>-osmaligand, its coordination to iridium to afford an...
A new catalytic system for the dehydrogenative oxidation of alcohols using a water-soluble Cp*Ir com...
The preparation of a N,N,N-osmaligand, its coordination to iridium to afford an efficient catalyst p...
Oxidation of alcohols is an essential organic reaction, affording versatile carbonyl groups. To prov...
Efficient deoxygenation methods are needed now more than ever in the chemist's toolbox to convert bi...
The promoterless AAD (acceptorless alcohol dehydrogenation) reaction mediated by an iridium catalyst...
Oxidation of alcohols is an essential organic reaction, affording versatile carbonyl groups. To prov...
The bmpi (1,3-bis(6′-methyl-2′-pyridylimino)isoindoline) pincer Ru(II) hydride complex catalyzes ...
The chemoselective dehydrogenation of glycerol was catalyzed by organoiridium derivatives of the typ...
Acceptorless dehydrogenation into carbonyls and molecular hydrogen is an attractive strategy to valo...
A new catalytic system that employs water as an environmentally friendly solvent for the dehydrogena...
A highly efficient system for the catalytic deuteration of α and β CH bonds of primary and secondary...
An iridium(III) pentamethylcyclopentadienyl catalyst supported by 6,6′-dihydroxy-2,2′-bipyridine di...
We introduce iridium-based conditions for the conversion of primary alcohols to potassium carboxylat...
A new catalytic system that employs water as an environmentally friendly solvent for the dehydrogena...
The preparation of a <i>N</i>,<i>N</i>,<i>N</i>-osmaligand, its coordination to iridium to afford an...
A new catalytic system for the dehydrogenative oxidation of alcohols using a water-soluble Cp*Ir com...
The preparation of a N,N,N-osmaligand, its coordination to iridium to afford an efficient catalyst p...
Oxidation of alcohols is an essential organic reaction, affording versatile carbonyl groups. To prov...
Efficient deoxygenation methods are needed now more than ever in the chemist's toolbox to convert bi...
The promoterless AAD (acceptorless alcohol dehydrogenation) reaction mediated by an iridium catalyst...
Oxidation of alcohols is an essential organic reaction, affording versatile carbonyl groups. To prov...
The bmpi (1,3-bis(6′-methyl-2′-pyridylimino)isoindoline) pincer Ru(II) hydride complex catalyzes ...
The chemoselective dehydrogenation of glycerol was catalyzed by organoiridium derivatives of the typ...
Acceptorless dehydrogenation into carbonyls and molecular hydrogen is an attractive strategy to valo...