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A unique porous structure of MCF was found to be a critical factor which renders siliceous mesostructured foam a very promising material for immobilization of enzymes.
This feature gives a potential to apply the partly conjugated copolyviologen film with redox properties as a conducting host material for immobilization of macromolecules.
Hence, it is not surprising that large number of efforts have been recently described in which magnetic nanoparticles have been used as a support or a component of the composite material for immobilization of enzyme for catalysis in low water media as well [21, 22].
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Zeolites are interesting materials for immobilization of enzymes due to their high surface area and participation in different interactions - hydrophobic, hydrophilic, and electrostatic.
The suitability of the layer-by-layer (LbL) technique, based on the alternate adsorption of oppositely charged materials, for immobilization of biomolecules has been well established.
The results obtained in this study suggest that NSs have the potential for use as novel electrode materials for immobilization of cyt c.
Findings in this study may be helpful for exploiting novel materials for immobilization of enzymes through carbonizing conducting polymers or their composites with inorganic materials at high temperature for applications in enzymatic biofuel cells or biosensors.
A great number of nanostructured materials with different sizes, shapes, and compositions have been synthesized and utilized as novel electrode materials for immobilization of desired enzymes.
Magnetic particles were employed for their potential application as a support material for lipase immobilization.
Besides, the intertwined fibrous network is mechanically stable which makes ESM an ideal support material for the immobilization of nanoparticles.
A number of researches have been carried out to search for a suitable material for effective immobilization of cell on substrate.
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