Under very mild reaction conditions, the active-iron-based reducing system composed of FeCl2·4H2O, an excess of lithium powder and a catalytic amount (5 mol%) of 4,4′-di-tert-butylbiphenyl (DTBB) as electron carrier, efficiently performed the hydrodehalogenation of alkyl and aryl halides in tetrahydrofuran at room temperature. The reaction of a series of alkyl and aryl chlorides, bromides, and iodides with this reducing combination led to the formation of the corresponding products resulting from a halogen/hydrogen exchange. Interestingly, the reducing system was efficient in the hydrodehalogenation of aryl fluorides and polychlorinated aromatics. The use of deuterium oxide instead of water in the iron salt allowed the preparation of the co...
Organic halides react with lithium formate in the presence of ruthenium and rhodium phosphine comple...
The pair NaBH4–TMEDA as a hydride source and catalytic PdCl2(dppf) in THF prove to be an efficient s...
Synthetic non‐heme iron halides promote sub‐stoichiometric aliphatic halogenation reactions via a ra...
This copy of the thesis has been supplied on condition that anyone who consults it is understood to ...
The abatement of halogenated compounds released from various processes into the environment is now r...
A catalyst- and metal-free electrochemical hydrodehalogenation of aryl halides is disclosed. Our rea...
Non-heme iron based halogenase enzymes promote selective halogenation of the sp(3)-C-H bond through ...
A practical method for radical chain reduction of various aryl bromides and chlorides is introduced....
International audienceNon-heme iron based halogenase enzymes promote selective halogenation of the s...
Aryl halides have been catalytically hydrodehalogenated by bubbling H-2 at atmospheric pressure into...
A convenient and efficient catalytic aryl halide dehalogenation protocol has been developed using an...
This work describes the heterogenous catalytic hydrogenolysis in aqueous medium for the development ...
Iron nanoparticles of size 6-16 nm have been successfully prepared by the reduction of FeCb with 3-p...
Synthetic non-heme iron halides promote sub-stoichiometric aliphatic halogenation reactions via a ra...
Iron-catalysed carbonyl reduction, nitro reduction, formal hydroamination, and the radical alkenyla...
Organic halides react with lithium formate in the presence of ruthenium and rhodium phosphine comple...
The pair NaBH4–TMEDA as a hydride source and catalytic PdCl2(dppf) in THF prove to be an efficient s...
Synthetic non‐heme iron halides promote sub‐stoichiometric aliphatic halogenation reactions via a ra...
This copy of the thesis has been supplied on condition that anyone who consults it is understood to ...
The abatement of halogenated compounds released from various processes into the environment is now r...
A catalyst- and metal-free electrochemical hydrodehalogenation of aryl halides is disclosed. Our rea...
Non-heme iron based halogenase enzymes promote selective halogenation of the sp(3)-C-H bond through ...
A practical method for radical chain reduction of various aryl bromides and chlorides is introduced....
International audienceNon-heme iron based halogenase enzymes promote selective halogenation of the s...
Aryl halides have been catalytically hydrodehalogenated by bubbling H-2 at atmospheric pressure into...
A convenient and efficient catalytic aryl halide dehalogenation protocol has been developed using an...
This work describes the heterogenous catalytic hydrogenolysis in aqueous medium for the development ...
Iron nanoparticles of size 6-16 nm have been successfully prepared by the reduction of FeCb with 3-p...
Synthetic non-heme iron halides promote sub-stoichiometric aliphatic halogenation reactions via a ra...
Iron-catalysed carbonyl reduction, nitro reduction, formal hydroamination, and the radical alkenyla...
Organic halides react with lithium formate in the presence of ruthenium and rhodium phosphine comple...
The pair NaBH4–TMEDA as a hydride source and catalytic PdCl2(dppf) in THF prove to be an efficient s...
Synthetic non‐heme iron halides promote sub‐stoichiometric aliphatic halogenation reactions via a ra...