Bioactive glasses with hierarchical nanoporosity and structures have been heavily involved in immobilization of enzymes. Because of meticulous design and ingenious hierarchical nanostructuration of porosities from yeast cell biotemplates, hierarchically nanostructured porous bioactive glasses can provide a simple, cost-effective way to enhance catalytic activity of directly immobilized enzyme. Its unique chemical surface properties and hierarchical meso/macroporous structures lead to highly efficient catalytic performances of the directly immobilized enzymes. The enzyme molecules were spontaneously entrapped into the highly curved macropores (200–500 nm) via multipoint metal ion binding in electrical double layers. Hence, the enzyme activit...
Macromolecular crowding is an ubiquitous phenomenon in living cells that significantly affects the f...
Nanoporous silica suitable for enzyme support was synthesized via a salt route and the pore morpholo...
The two enzymes Aspergillus sp. glucose oxidase (GOD) and horseradish peroxidase (HRP) were co-immob...
Biocatalysis with immobilized enzymes as catalysts holds enormous promise in developing more efficie...
Immobilized enzymes on silica nano-carriers are stable biocatalysts with the potential for use in a ...
Hierarchically ordered mesocellular mesoporous silica materials (HMMS) were synthesized using a sing...
Mesoporous materials have recently gained much attention owing to their large surface area, narrow p...
The encapsulation of enzymes in wet, nanoporous silica gels is a powerful strategy to exploit the ca...
Mesoporous materials have recently gained much attention owing to their large surface area, narrow p...
Mesoporous materials are of great interest to the materials community because of their potential app...
Hierarchical silica porous materials have been successfully synthesized using polystyrene nanosphere...
Fabrication of ultrasmall functional machines and their integration within ultrasmall areas or volum...
Immobilized enzyme-based catalytic constructs could greatly improve various industrial processes due...
Large mesopores cellular foam (LMCFs) materials with diameters ranging from 17 to 34 nm were synthes...
Mesoporous silica nanoparticles provide a non-invasive and biocompatible delivery platform for a bro...
Macromolecular crowding is an ubiquitous phenomenon in living cells that significantly affects the f...
Nanoporous silica suitable for enzyme support was synthesized via a salt route and the pore morpholo...
The two enzymes Aspergillus sp. glucose oxidase (GOD) and horseradish peroxidase (HRP) were co-immob...
Biocatalysis with immobilized enzymes as catalysts holds enormous promise in developing more efficie...
Immobilized enzymes on silica nano-carriers are stable biocatalysts with the potential for use in a ...
Hierarchically ordered mesocellular mesoporous silica materials (HMMS) were synthesized using a sing...
Mesoporous materials have recently gained much attention owing to their large surface area, narrow p...
The encapsulation of enzymes in wet, nanoporous silica gels is a powerful strategy to exploit the ca...
Mesoporous materials have recently gained much attention owing to their large surface area, narrow p...
Mesoporous materials are of great interest to the materials community because of their potential app...
Hierarchical silica porous materials have been successfully synthesized using polystyrene nanosphere...
Fabrication of ultrasmall functional machines and their integration within ultrasmall areas or volum...
Immobilized enzyme-based catalytic constructs could greatly improve various industrial processes due...
Large mesopores cellular foam (LMCFs) materials with diameters ranging from 17 to 34 nm were synthes...
Mesoporous silica nanoparticles provide a non-invasive and biocompatible delivery platform for a bro...
Macromolecular crowding is an ubiquitous phenomenon in living cells that significantly affects the f...
Nanoporous silica suitable for enzyme support was synthesized via a salt route and the pore morpholo...
The two enzymes Aspergillus sp. glucose oxidase (GOD) and horseradish peroxidase (HRP) were co-immob...