Mechanochemical ball milling catalytic transfer hydrogenation (CTH) of aromatic nitro compounds using readily available and cheap ammonium formate as the hydrogen source is demonstrated as a simple, facile and clean approach for the synthesis of substituted anilines and selected pharmaceutically relevant compounds. The scope of mechanochemical CTH is broad, as the reduction conditions tolerate various functionalities, for example nitro, amino, hydroxy, carbonyl, amide, urea, amino acid and heterocyclic. The presented methodology was also successfully integrated with other types of chemical reactions previously carried out mechanochemically, such as amide bond formation by coupling amines with acyl chlorides or anhydrides and click-type coup...
International audienceThe eco-compatible, base- and waste-free, energy-efficient, low-environmental-...
A mild and efficient catalytic transfer hydrogenation (CTH) system has been developed for the facile...
Phase transfer catalysis (PTC) is an excellent possibility in the synthesis of organic compounds as ...
Mechanochemical ball milling catalytic transfer hydrogenation (CTH) of aromatic nitro compounds usin...
This thesis deals with the development of novel mechanochemical-induced C-H functionalizations in ba...
A direct and mild route to formanilides from aromatic nitro compounds bearing different functional g...
Abstract Aromatic nitro compounds were reduced to respective amines in high yields by using 5% plati...
Hydrogenation and dehydrogenation reactions are one of the pillars of the chemical industry, with ap...
Transfer hydrogenation of aromatic nitro compounds using recyclable polymer‐supported formate as hyd...
Abstract: The literature related to the reduction of aromatic nitro compounds is reviewed. The reduc...
Herein, we described a highly efficient heterogeneous Pd/C-catalyzed transfer hydrogenation of nitro...
Within this thesis is described a series of studies into performing organic synthesis under mechanoc...
Herein, we report on the use of nanopalladium on amino-functionalized siliceous mesocellular foam as...
This thesis describes the investigations into solvent-minimised catalytic transformations, under m...
The reduction of the nitro group represents a powerful and widely used transformation that allows to...
International audienceThe eco-compatible, base- and waste-free, energy-efficient, low-environmental-...
A mild and efficient catalytic transfer hydrogenation (CTH) system has been developed for the facile...
Phase transfer catalysis (PTC) is an excellent possibility in the synthesis of organic compounds as ...
Mechanochemical ball milling catalytic transfer hydrogenation (CTH) of aromatic nitro compounds usin...
This thesis deals with the development of novel mechanochemical-induced C-H functionalizations in ba...
A direct and mild route to formanilides from aromatic nitro compounds bearing different functional g...
Abstract Aromatic nitro compounds were reduced to respective amines in high yields by using 5% plati...
Hydrogenation and dehydrogenation reactions are one of the pillars of the chemical industry, with ap...
Transfer hydrogenation of aromatic nitro compounds using recyclable polymer‐supported formate as hyd...
Abstract: The literature related to the reduction of aromatic nitro compounds is reviewed. The reduc...
Herein, we described a highly efficient heterogeneous Pd/C-catalyzed transfer hydrogenation of nitro...
Within this thesis is described a series of studies into performing organic synthesis under mechanoc...
Herein, we report on the use of nanopalladium on amino-functionalized siliceous mesocellular foam as...
This thesis describes the investigations into solvent-minimised catalytic transformations, under m...
The reduction of the nitro group represents a powerful and widely used transformation that allows to...
International audienceThe eco-compatible, base- and waste-free, energy-efficient, low-environmental-...
A mild and efficient catalytic transfer hydrogenation (CTH) system has been developed for the facile...
Phase transfer catalysis (PTC) is an excellent possibility in the synthesis of organic compounds as ...