We describe a new approach to selective H2-driven hydrogenation that exploits a sequence of enzymes immobilised on carbon particles. We used a catalyst system that comprised alcohol dehydrogenase, hydrogenase and an NAD(+) reductase on carbon black to demonstrate a greater than 98 % conversion of acetophenone to phenylethanol. Oxidation of H2 by the hydrogenase provides electrons through the carbon for NAD(+) reduction to recycle the NADH cofactor required by the alcohol dehydrogenase. This biocatalytic system operates over the pH range 6-8 or in un-buffered water, and can function at low concentrations of the cofactor (10 μm NAD(+)) and at H2 partial pressures below 1 bar. Total turnover numbers >130 000 during acetophenone reduction in...
The use of hydrogenases for the direct reduction of cofactors with molecular hydrogen provides a mea...
This Thesis is primarily concerned with developing sustainable and cost-efficient methods for applic...
Enzymatic reduction using oxidoreductases is important in commercial chemical production. This enzym...
We describe a new approach to selective H-2-driven hydrogenation that exploits a sequence of enzymes...
Asymmetric reductions are used to produce chiral molecules, which are important precursors for the p...
The use of enzymes as catalysts is becoming more common, in part due to their high sel...
Heterogeneous biocatalytic hydrogenation is an attractive strategy for clean, enantioselective C=X r...
We demonstrate a recycling system for synthetic nicotinamide cofactor analogues using a soluble hydr...
The high selectivity of biocatalysis offers a valuable method for greener, more efficient production...
This article considers the ways in which redox enzyme modules are coupled in living cells for linkin...
The present study considers the ways in which redox enzyme modules are coupled in living cells for l...
A large number of industrially relevant enzymes depend upon nicotinamide cofactors, which are too ex...
The O2-tolerant NAD+-reducing hydrogenase (SH) from Ralstonia eutropha (Cupriavidus necator) has alr...
We describe implementation of a system of immobilised enzymes for H2-driven NADH recycling coupled t...
The application of homogeneously soluble catalysts is limited by the recovery in cases where the pri...
The use of hydrogenases for the direct reduction of cofactors with molecular hydrogen provides a mea...
This Thesis is primarily concerned with developing sustainable and cost-efficient methods for applic...
Enzymatic reduction using oxidoreductases is important in commercial chemical production. This enzym...
We describe a new approach to selective H-2-driven hydrogenation that exploits a sequence of enzymes...
Asymmetric reductions are used to produce chiral molecules, which are important precursors for the p...
The use of enzymes as catalysts is becoming more common, in part due to their high sel...
Heterogeneous biocatalytic hydrogenation is an attractive strategy for clean, enantioselective C=X r...
We demonstrate a recycling system for synthetic nicotinamide cofactor analogues using a soluble hydr...
The high selectivity of biocatalysis offers a valuable method for greener, more efficient production...
This article considers the ways in which redox enzyme modules are coupled in living cells for linkin...
The present study considers the ways in which redox enzyme modules are coupled in living cells for l...
A large number of industrially relevant enzymes depend upon nicotinamide cofactors, which are too ex...
The O2-tolerant NAD+-reducing hydrogenase (SH) from Ralstonia eutropha (Cupriavidus necator) has alr...
We describe implementation of a system of immobilised enzymes for H2-driven NADH recycling coupled t...
The application of homogeneously soluble catalysts is limited by the recovery in cases where the pri...
The use of hydrogenases for the direct reduction of cofactors with molecular hydrogen provides a mea...
This Thesis is primarily concerned with developing sustainable and cost-efficient methods for applic...
Enzymatic reduction using oxidoreductases is important in commercial chemical production. This enzym...