A method to efficiently immobilize enzymes on 3D printed continuous-flow devices is presented. Application of these chemically modified devices enables rapid screening of immobilization mechanisms and reaction conditions, simple transfer of optimised conditions into tailored printed microfluidic reactors and development of continuous-flow biocatalytic processes. The bioreactors showed good activity (8-20.5 μmol h⁻¹ mgenz⁻¹) in the kinetic resolution of 1-methylbenzylamine, and very good stability (ca. 100 h under flow)
Our research focusses on highly sustainable enzymatic methods for the preparation of valuable molecu...
The continuous flow synthesis of a series of amines was successfully achieved by exploiting the enha...
Biocatalysis has widened its scope and relevance since new molecular tools, including improved expre...
A method to efficiently immobilize enzymes on 3D printed continuous-flow devices is presented. Appli...
A method to efficiently immobilize enzymes on 3D printed continuous-flow devices is presented. Appli...
The utilization of continuous-flow biochemical reactors, including biocatalysis, biotransformation, ...
The development of process steps catalyzed by immobilized enzymes usually encompasses the screening ...
In continuous flow biocatalysis, chemical transformations can occur under milder, greener, more scal...
The use of flow reactors in biocatalysis has increased significantly in recent years. Chemists have ...
Employment of enzymes as biocatalysts offers immense benefits across diverse sectors in the context ...
The continuous flow synthesis of active pharmaceutical ingredients, value-added chemicals, and mater...
Biocatalysis provides a unique opportunity to create complex and chiral molecules with unprecedented...
Open Access Article. This article is licensed under a Creative Commons Attribution 3.0 Unported Lic...
The continuous flow synthesis of active pharmaceutical ingredients, value-added chemicals, and mater...
The immobilization of biocatalysts in a continuous fluidic setup is one way to achieve compartmental...
Our research focusses on highly sustainable enzymatic methods for the preparation of valuable molecu...
The continuous flow synthesis of a series of amines was successfully achieved by exploiting the enha...
Biocatalysis has widened its scope and relevance since new molecular tools, including improved expre...
A method to efficiently immobilize enzymes on 3D printed continuous-flow devices is presented. Appli...
A method to efficiently immobilize enzymes on 3D printed continuous-flow devices is presented. Appli...
The utilization of continuous-flow biochemical reactors, including biocatalysis, biotransformation, ...
The development of process steps catalyzed by immobilized enzymes usually encompasses the screening ...
In continuous flow biocatalysis, chemical transformations can occur under milder, greener, more scal...
The use of flow reactors in biocatalysis has increased significantly in recent years. Chemists have ...
Employment of enzymes as biocatalysts offers immense benefits across diverse sectors in the context ...
The continuous flow synthesis of active pharmaceutical ingredients, value-added chemicals, and mater...
Biocatalysis provides a unique opportunity to create complex and chiral molecules with unprecedented...
Open Access Article. This article is licensed under a Creative Commons Attribution 3.0 Unported Lic...
The continuous flow synthesis of active pharmaceutical ingredients, value-added chemicals, and mater...
The immobilization of biocatalysts in a continuous fluidic setup is one way to achieve compartmental...
Our research focusses on highly sustainable enzymatic methods for the preparation of valuable molecu...
The continuous flow synthesis of a series of amines was successfully achieved by exploiting the enha...
Biocatalysis has widened its scope and relevance since new molecular tools, including improved expre...