International audienceThe electrochemical regeneration of the NADH cofactor was realized in a hybrid flow reactor coupling fuel cell technology and redox flow device, paying attention to the robust immobilization of all catalysts. The rhodium catalyst Rh(Cp∗)(bpy)Cl+ was covalently immobilized on a MWCNT layer and the association with the gas diffusion electrode was carefully optimized. High stability and activity of the electrochemical system were assessed by cyclic voltammetry and amperometry in the flow reactor. Afterwards, the optimal cofactor regeneration was applied to NADH-dependent biosynthesis using immobilized lactate dehydrogenase for the conversion of pyruvate to lactate in the flow cell in the presence of cofactor concentration...
Rh(III)-TsDPEN, an immobilized analog of the well-known [Cp*Rh(bpy)(H2O)]2+ was evaluated as a heter...
Covalent bonding of (2,2′-bipyridyl) (pentamethylcyclopentadienyl)-rhodium complex at the surface of...
In this study, an enzymatic pathway has been developed to replicate the Calvin Cycle by creating the...
International audienceThe electrochemical regeneration of the NADH cofactor was realized in a hybrid...
International audienceBeta-nicotinamide adenine dinucleotide (NAD + /NADH) is an important enzymatic...
International audienceThe effectiveness of hybrid bioelectrocatalytic flow reactor with NADH cofacto...
The use of enzymes in biochemical processes is of interest due to their ability to work under mild c...
The use of enzymes as catalysts is becoming more common, in part due to their high sel...
This communication reports a microfluidic electrochemical method for efficient regeneration of cofac...
International audienceThe regeneration of the NADH cofactor is crucial for bioelectrocatalytic react...
Complexes of the (2,2'-bipyridyl) (pentamethylcyclopentadienyl)-rhodium family ([Cp*Rh(bpy)Cl](+), w...
The work in this Thesis addresses the challenges associated with using redox enzymes for chemical sy...
This thesis investigates novel solutions for the electrochemical regeneration of NADH for use in app...
We report the electrochemical cofactor regeneration for electroenzymatic reduction as a promising al...
Enzymatic reduction using oxidoreductases is important in commercial chemical production. This enzym...
Rh(III)-TsDPEN, an immobilized analog of the well-known [Cp*Rh(bpy)(H2O)]2+ was evaluated as a heter...
Covalent bonding of (2,2′-bipyridyl) (pentamethylcyclopentadienyl)-rhodium complex at the surface of...
In this study, an enzymatic pathway has been developed to replicate the Calvin Cycle by creating the...
International audienceThe electrochemical regeneration of the NADH cofactor was realized in a hybrid...
International audienceBeta-nicotinamide adenine dinucleotide (NAD + /NADH) is an important enzymatic...
International audienceThe effectiveness of hybrid bioelectrocatalytic flow reactor with NADH cofacto...
The use of enzymes in biochemical processes is of interest due to their ability to work under mild c...
The use of enzymes as catalysts is becoming more common, in part due to their high sel...
This communication reports a microfluidic electrochemical method for efficient regeneration of cofac...
International audienceThe regeneration of the NADH cofactor is crucial for bioelectrocatalytic react...
Complexes of the (2,2'-bipyridyl) (pentamethylcyclopentadienyl)-rhodium family ([Cp*Rh(bpy)Cl](+), w...
The work in this Thesis addresses the challenges associated with using redox enzymes for chemical sy...
This thesis investigates novel solutions for the electrochemical regeneration of NADH for use in app...
We report the electrochemical cofactor regeneration for electroenzymatic reduction as a promising al...
Enzymatic reduction using oxidoreductases is important in commercial chemical production. This enzym...
Rh(III)-TsDPEN, an immobilized analog of the well-known [Cp*Rh(bpy)(H2O)]2+ was evaluated as a heter...
Covalent bonding of (2,2′-bipyridyl) (pentamethylcyclopentadienyl)-rhodium complex at the surface of...
In this study, an enzymatic pathway has been developed to replicate the Calvin Cycle by creating the...