Enzymes can catalyse solid-to-solid condensation reactions in highly concentrated aqueous substrate suspensions. Reaction products precipitate from the reaction mixture and very high conversion yields can be obtained in low volume reactors. Solid-to-solid biocatalysis combines the advantages of using enzymes in aqueous media with the high conversion yields that are typically associated with non-aqueous biocatalysis. In this article, methods are presented for the calculation of the Gibbs free energy changes and heats of reaction of condensation reactions to form amides. The overall enthalpy change of the enzymatic reaction was compared to that of the conventional chemical methods and it was found that the enzymatic reaction produces a third ...
Biocatalysis in non-aqueous media has undergone tremendous development during the last decade, and n...
The developments on applications of supercritical fluids as alternative solvents for biocatalytic pr...
Gröger H, Hummel W. Combining the 'two worlds' of chemocatalysis and biocatalysis towards multi-step...
Enzymes can catalyse solid-to-solid condensation reactions in highly concentrated aqueous substrate ...
Enzymatic synthesis in reaction mixtures with mainly undissolved substrates and / or products is a s...
Enzymatic synthesis in reaction mixtures with mainly undissolved substrates and/or products is a syn...
Solid-to-solid peptide synthesis is an enzyme-catalyzed reaction carried out in a mixture consisting...
The feasibility of scale-up for applications of enzymatic solid-to-solid synthesis of dipeptides was...
In nature, enzymes conventionally operate under aqueous conditions. Because of this, aqueous buffers...
International audienceSolid/gas biocatalysis appears today as a promising technology for fundamental...
Biocatalysis is a growing field in the production of fine chemicals and will most probably increase ...
Closing a gap in the literature, this comprehensive book examines and discusses different non-aqueou...
International audienceSolid-gas biocatalysis appears today to be a promising technology for fundamen...
Selectivity and efficiency of enzymes can be fruitfully exploited in peptide chemistry for amide bon...
Enzymatic conversion of gaseous substrates into products in aquo-restricted media, using enzymes or ...
Biocatalysis in non-aqueous media has undergone tremendous development during the last decade, and n...
The developments on applications of supercritical fluids as alternative solvents for biocatalytic pr...
Gröger H, Hummel W. Combining the 'two worlds' of chemocatalysis and biocatalysis towards multi-step...
Enzymes can catalyse solid-to-solid condensation reactions in highly concentrated aqueous substrate ...
Enzymatic synthesis in reaction mixtures with mainly undissolved substrates and / or products is a s...
Enzymatic synthesis in reaction mixtures with mainly undissolved substrates and/or products is a syn...
Solid-to-solid peptide synthesis is an enzyme-catalyzed reaction carried out in a mixture consisting...
The feasibility of scale-up for applications of enzymatic solid-to-solid synthesis of dipeptides was...
In nature, enzymes conventionally operate under aqueous conditions. Because of this, aqueous buffers...
International audienceSolid/gas biocatalysis appears today as a promising technology for fundamental...
Biocatalysis is a growing field in the production of fine chemicals and will most probably increase ...
Closing a gap in the literature, this comprehensive book examines and discusses different non-aqueou...
International audienceSolid-gas biocatalysis appears today to be a promising technology for fundamen...
Selectivity and efficiency of enzymes can be fruitfully exploited in peptide chemistry for amide bon...
Enzymatic conversion of gaseous substrates into products in aquo-restricted media, using enzymes or ...
Biocatalysis in non-aqueous media has undergone tremendous development during the last decade, and n...
The developments on applications of supercritical fluids as alternative solvents for biocatalytic pr...
Gröger H, Hummel W. Combining the 'two worlds' of chemocatalysis and biocatalysis towards multi-step...