Artificial metalloenzymes as catalysts are promising candidates for their use in different technologies, such as bioremediation, biomass transformation, or biosensing. Despite this, their practical exploitation is still at an early stage. Immobilized natural enzymes have been proposed to enhance their applicability. Immobilization may offer several advantages: (i) catalyst reuse; (ii) easy separation of the enzyme from the reaction medium; (iii) better tolerance to harsh temperature and pH conditions. Here, we report an easy immobilization procedure of an artificial peroxidase on different surfaces, by means of click chemistry. FeMC6*a, a recently developed peroxidase mimic, has been functionalized with a pegylated aza-dibenzocyclooctyne to...
Although various supports including nanomaterials have been widely utilized as platforms for enzymes...
High catalytic efficiency, stereoselectivity, and sustainability outcomes of enzymes entice chemists...
We have developed an efficient conversion of amino iron oxides to carbohydrate and protein derived n...
Artificial metalloenzymes as catalysts are promising candidates for their use in different technolog...
In recent years, substantial advances have been made in the development of artificial metalloenzymes...
This article overviews the numerous immobilization methods available for various biocatalysts such a...
Biological enzymes are macromolecular catalysts that catalyze the biochemical reactions of the natur...
Enzymes are naturally occuring sustainable catalysts that offer competitive catalysis to synthetic r...
A review. In recent years, significant progress has been made in the computational design of functio...
Immobilized enzyme-based catalytic constructs could greatly improve various industrial processes due...
Enzyme-catalyzed controlled radical polymerization represents a powerful approach for the polymeriza...
The catalytic efficiency and high selectivities achieved by natural metalloenzymes are a source of i...
Initial applications of biocatalysis involved the used of naturally occurring enzyme. With new chal...
There is a growing interest in implementing organometallic catalysis in the context of synthetic bio...
Residing at the interface of chemistry and biotechnology, artificial metalloenzymes (ArMs) offer an ...
Although various supports including nanomaterials have been widely utilized as platforms for enzymes...
High catalytic efficiency, stereoselectivity, and sustainability outcomes of enzymes entice chemists...
We have developed an efficient conversion of amino iron oxides to carbohydrate and protein derived n...
Artificial metalloenzymes as catalysts are promising candidates for their use in different technolog...
In recent years, substantial advances have been made in the development of artificial metalloenzymes...
This article overviews the numerous immobilization methods available for various biocatalysts such a...
Biological enzymes are macromolecular catalysts that catalyze the biochemical reactions of the natur...
Enzymes are naturally occuring sustainable catalysts that offer competitive catalysis to synthetic r...
A review. In recent years, significant progress has been made in the computational design of functio...
Immobilized enzyme-based catalytic constructs could greatly improve various industrial processes due...
Enzyme-catalyzed controlled radical polymerization represents a powerful approach for the polymeriza...
The catalytic efficiency and high selectivities achieved by natural metalloenzymes are a source of i...
Initial applications of biocatalysis involved the used of naturally occurring enzyme. With new chal...
There is a growing interest in implementing organometallic catalysis in the context of synthetic bio...
Residing at the interface of chemistry and biotechnology, artificial metalloenzymes (ArMs) offer an ...
Although various supports including nanomaterials have been widely utilized as platforms for enzymes...
High catalytic efficiency, stereoselectivity, and sustainability outcomes of enzymes entice chemists...
We have developed an efficient conversion of amino iron oxides to carbohydrate and protein derived n...