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Most man-made matrices for enzyme confinement lead to suboptimal catalytic activity.
Graphene-based nanomaterials have been widely studied as high-performance matrices for enzyme immobilization and in the development of biosensors.
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Chitosan was used as a matrix for enzyme immobilization.
Such a design and preparation method provide a new route for the design of composite support with ceramics matrix for enzyme catalysts.
The use of Au nanoparticles (AuNPs)–CaCO3 porous microsphere hybrid as a matrix for enzyme immobilization to increase the performance of an amperometric biosensor.
Moreover, when evaluated as a matrix for enzyme encapsulation, the resulting NGQDs/3DBiOI HHMs exhibited enhanced load capacity than pure BiOI microspheres by virtue of their particular nanostructure.
Freeze-drying aqueous poly vinyl alcohol) (PVA) solutions affords porous foam materials that show potential as an interesting entrapping matrix for enzyme immobilization.
A carbon micro/nanostructured composite based on cup-stacked carbon nanotubes (CSCNTs) grown onto a carbon felt has been found to be an efficient matrix for enzyme immobilization and chemical signal transduction.
A novel matrix for enzyme immobilization was successfully developed by using Pt/Au bimetallic hierarchical structure with micro/nano-array to generate highly sensitive biosensors for glutamic oxaloacetic transaminase (GOT, EC 2.6.1.1) and glutamic pyruvic transaminase (GPT, EC 2.6.1.2) determination.
For this purpose, a novel monomer, 9-methyl-9H-carbazole-3-carbohydrazine (MCCH), was designed and electrochemically polymerized on a graphite electrode to achieve a conducting and effective immobilization matrix for enzyme immobilization.
In this study a monomer; (10,13-bis 10,13-bisrothieno[3,4-b][1,4]dioxin-5-yl)dibenzo[a,c]phenazine (PHED)) was synthesized and then its polymer was coated on a graphite electrode by electropolymerization to obtain a matrix for enzyme immobilization.
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