Macromolecular crowding is an ubiquitous phenomenon in living cells that significantly affects the function of enzymes invivo. However, this effect has not been paid much attention in the research of the immobilization of enzymes onto mesoporous silica. Herein, we report the combined effects of macromolecular crowding and surface hydrophobicity on the performance of an immobilized enzyme by accommodating lipase molecules into a series of mesoporous silicas with different amounts of inert poly(methacrylate) (PMA) covalently anchored inside the nanopores. The incorporation of the PMA polymer into the nanopores of mesoporous silica enables the fabrication of a crowded and hydrophobic microenvironment for the immobilized enzyme and the variatio...
Mesoporous materials as support for immobilized enzymes have been explored extensively during the la...
Polystyrene (PST) microspheres are commonly chosen as immobilization carriers due to their unique ad...
Mesoporous materials as support for immobilized enzymes have been explored extensively during the la...
The highly ordered mesoporous silicas with elaborately controlled microenvironment were synthesized ...
The crowded and hydrophobic microenvironment was created for immobilized enzymes via the thermally-i...
Biocatalysis with immobilized enzymes as catalysts holds enormous promise in developing more efficie...
The highly ordered mesoporous silicas with elaborately controlled microenvironment were synthesized ...
Immobilization of enzymes usually improves the recyclability and stability and can sometimes also im...
Immobilization of enzymes usually improves the recyclability and stability and can sometimes also im...
Immobilization of enzymes usually improves the recyclability and stability and can sometimes also im...
The rational design of nano-carriers is critical for modern enzyme immobilization for advanced bioca...
Catalysts are widely used in many industries for production of chemicals, pharmaceuticals, fuels and...
Immobilized enzymes on silica nano-carriers are stable biocatalysts with the potential for use in a ...
Immobilized enzymes on silica nano-carriers are stable biocatalysts with the potential for use in a ...
Immobilized enzymes on silica nano-carriers are stable biocatalysts with the potential for use in a ...
Mesoporous materials as support for immobilized enzymes have been explored extensively during the la...
Polystyrene (PST) microspheres are commonly chosen as immobilization carriers due to their unique ad...
Mesoporous materials as support for immobilized enzymes have been explored extensively during the la...
The highly ordered mesoporous silicas with elaborately controlled microenvironment were synthesized ...
The crowded and hydrophobic microenvironment was created for immobilized enzymes via the thermally-i...
Biocatalysis with immobilized enzymes as catalysts holds enormous promise in developing more efficie...
The highly ordered mesoporous silicas with elaborately controlled microenvironment were synthesized ...
Immobilization of enzymes usually improves the recyclability and stability and can sometimes also im...
Immobilization of enzymes usually improves the recyclability and stability and can sometimes also im...
Immobilization of enzymes usually improves the recyclability and stability and can sometimes also im...
The rational design of nano-carriers is critical for modern enzyme immobilization for advanced bioca...
Catalysts are widely used in many industries for production of chemicals, pharmaceuticals, fuels and...
Immobilized enzymes on silica nano-carriers are stable biocatalysts with the potential for use in a ...
Immobilized enzymes on silica nano-carriers are stable biocatalysts with the potential for use in a ...
Immobilized enzymes on silica nano-carriers are stable biocatalysts with the potential for use in a ...
Mesoporous materials as support for immobilized enzymes have been explored extensively during the la...
Polystyrene (PST) microspheres are commonly chosen as immobilization carriers due to their unique ad...
Mesoporous materials as support for immobilized enzymes have been explored extensively during the la...