International audienceA one-pot two-step procedure was developed for the alkylation of amines via reductive amination of aldehydes using molecular dihydrogen as a reductant in the presence of a manganese pyridinyl-phosphine complex as a pre-catalyst. After the initial condensation step, the reduction of imines formed in situ is performed under mild conditions (50-100 degrees C) with 2 mol% of catalyst and 5 mol% of tBuOK under 50 bar of hydrogen. Excellent yields (>90%) were obtained for a large combination of aldehydes and amines (40 examples), including aliphatic aldehydes and amino-alcohols
Given the growing demand for green and sustainable chemical processes, the catalytic reductive alkyl...
Borrowing hydrogen (or hydrogen autotransfer) reactions represent straightforward and sustainable C-...
The use of manganese catalysts represents a new area of research in the field of catalytic homogenou...
International audienceA one-pot two-step procedure was developed for the alkylation of amines via re...
International audienceA one-pot two-step procedure was developed for the alkylation of amines via re...
International audienceA one-pot two-step procedure was developed for the alkylation of amines via re...
International audienceA one-pot two-step procedure was developed for the alkylation of amines via re...
International audienceThe reduction of imines to amines via transfer hydrogenation was achieved prom...
International audienceThe reduction of imines to amines via transfer hydrogenation was achieved prom...
The use of earth-abundant transition metals as a noble metal replacement in catalysis is especially ...
The application of nontoxic, earth-abundant transition metals in place of costly noble metals is a p...
The application of nontoxic, earth-abundant transition metals in place of costly noble metals is a p...
International audienceA one-pot two-step reaction (Knoevenagel condensation – reduction of the doubl...
Dehydrogenative coupling of alcohols and amines using a manganese based catalyst allows obtaining al...
Given the growing demand for green and sustainable chemical processes, the catalytic reductive alkyl...
Given the growing demand for green and sustainable chemical processes, the catalytic reductive alkyl...
Borrowing hydrogen (or hydrogen autotransfer) reactions represent straightforward and sustainable C-...
The use of manganese catalysts represents a new area of research in the field of catalytic homogenou...
International audienceA one-pot two-step procedure was developed for the alkylation of amines via re...
International audienceA one-pot two-step procedure was developed for the alkylation of amines via re...
International audienceA one-pot two-step procedure was developed for the alkylation of amines via re...
International audienceA one-pot two-step procedure was developed for the alkylation of amines via re...
International audienceThe reduction of imines to amines via transfer hydrogenation was achieved prom...
International audienceThe reduction of imines to amines via transfer hydrogenation was achieved prom...
The use of earth-abundant transition metals as a noble metal replacement in catalysis is especially ...
The application of nontoxic, earth-abundant transition metals in place of costly noble metals is a p...
The application of nontoxic, earth-abundant transition metals in place of costly noble metals is a p...
International audienceA one-pot two-step reaction (Knoevenagel condensation – reduction of the doubl...
Dehydrogenative coupling of alcohols and amines using a manganese based catalyst allows obtaining al...
Given the growing demand for green and sustainable chemical processes, the catalytic reductive alkyl...
Given the growing demand for green and sustainable chemical processes, the catalytic reductive alkyl...
Borrowing hydrogen (or hydrogen autotransfer) reactions represent straightforward and sustainable C-...
The use of manganese catalysts represents a new area of research in the field of catalytic homogenou...