Commercial cellulase Cellic CTec2 was immobilized by the entrapment technique in sol–gel matrices, and sol–gel entrapment with deposition onto magnetic nanoparticles, using binary or ternary systems of silane precursors with alkyl- or aryl-trimethoxysilanes, at different molar ratios. Appropriate tailoring of the sol–gel matrix allowed for the enhancement of the catalytic efficiency of the cellulase biocatalyst, which was then evaluated in the hydrolysis reaction of Avicel microcrystalline cellulose. A correlation between the catalytic activity with the properties of the sol–gel matrix of the nanobiocatalysts was observed using several characterization methods: scanning electron microscopy (SEM), fluorescence microscopy (FM), Fourier transf...
Nanostructured materials along with an added value of polymers-based support carriers have gained hi...
Abstract Cellulases are efficient enzymes for the conversion of cellulose into glucose. Their use in...
The constant increase in the number of sustainable products on the global markets demands new biotec...
Mesostructured silica nanoparticles offer a unique opportunity in the field of biocatalysis thanks t...
Lignocellulosic enzymes have been used in the pretreatment and hydrolysis of the biomass, are getti...
Nanobiocatalysts, i.e., enzymes immobilized on nanostructured supports, received considerable attent...
Mesoporous silica materials o_er a unique opportunity for enzyme immobilization thanks to their prop...
Fungal cellulases generally contain a reduced amount of β-glucosidase (BG), which does not allow for...
Biomass is a sustainable and renewable energy resource that can be converted to liquid transportatio...
To prepare a smart biocatalyst, cellulase was immobilized on the reversibly soluble matrix Eudragit ...
Cellulase, an enzymatic complex that synergically promotes the degradation of cellulose to glucose a...
For the first time, cellulase was successfully immobilized on a magnetic core-shell metal-organic fr...
Cellulases are enzymes with great potential for converting biomass to biofuels for sustainable energ...
Enzymatic hydrolysis is a key process for lignocellulosic biomass conversion; a way to increase its ...
Cellulase from Aspergillus niger was immobilized on a synthesized TiO2–lignin hybrid support. The en...
Nanostructured materials along with an added value of polymers-based support carriers have gained hi...
Abstract Cellulases are efficient enzymes for the conversion of cellulose into glucose. Their use in...
The constant increase in the number of sustainable products on the global markets demands new biotec...
Mesostructured silica nanoparticles offer a unique opportunity in the field of biocatalysis thanks t...
Lignocellulosic enzymes have been used in the pretreatment and hydrolysis of the biomass, are getti...
Nanobiocatalysts, i.e., enzymes immobilized on nanostructured supports, received considerable attent...
Mesoporous silica materials o_er a unique opportunity for enzyme immobilization thanks to their prop...
Fungal cellulases generally contain a reduced amount of β-glucosidase (BG), which does not allow for...
Biomass is a sustainable and renewable energy resource that can be converted to liquid transportatio...
To prepare a smart biocatalyst, cellulase was immobilized on the reversibly soluble matrix Eudragit ...
Cellulase, an enzymatic complex that synergically promotes the degradation of cellulose to glucose a...
For the first time, cellulase was successfully immobilized on a magnetic core-shell metal-organic fr...
Cellulases are enzymes with great potential for converting biomass to biofuels for sustainable energ...
Enzymatic hydrolysis is a key process for lignocellulosic biomass conversion; a way to increase its ...
Cellulase from Aspergillus niger was immobilized on a synthesized TiO2–lignin hybrid support. The en...
Nanostructured materials along with an added value of polymers-based support carriers have gained hi...
Abstract Cellulases are efficient enzymes for the conversion of cellulose into glucose. Their use in...
The constant increase in the number of sustainable products on the global markets demands new biotec...