A facile and efficient method is developed for enzyme immobilization on silica-coated magnetic nanoparticles (Fe3O4@SiO2 NPs) via dopamine (DA) self-polymerization process. The scanning electron microscope images indicate that Fe3O4@SiO2 NPs have a spherical and uniform size distribution, and the high saturation magnetization (14.68 emu g(-1)) makes it easily to be separated from the reaction system under an extra magnetic field. Fourier-transform infrared spectroscopy and thermogravimetric analysis reveal that polydopamine (PDA) has been successfully coated on Fe3O4@SiO2 NPs surface. During in situ polymerization of DA, laccase is also firmly immobilized on Fe3O4@SiO2 NPs, and the total activity recovery can reach to 43.28%. However, the...
A cost-effective design of reusable enzyme-functionalized particles with better catalytic activity i...
A magnetically recoverable biocatalyst has been effectively prepared through the immobilization of α...
Objective(s): Enzyme immobilization via nanoparticles is perfectly compatible against the other chem...
BackgroundImmobilization of lipase on appropriate solid supports is one way to improve their stabili...
BackgroundImmobilization of lipase on appropriate solid supports is one way to improve their stabili...
BackgroundImmobilization of lipase on appropriate solid supports is one way to improve their stabili...
Polyethylenimine (PEI) as a spacer-arm polymer was modified on amine-functioned Fe3O4 nanoparticles ...
Magnetic silica composite particles were prepared by using the biosilicification reaction, in which ...
Free laccase has limitations for its use in industrial applications that require laccase immobilizat...
Ferromagnetic nanomaterials can easily be separated from the reaction media by using external magnet...
Ferromagnetic nanomaterials can easily be separated from the reaction media by using external magnet...
Magnetic silica composite particles were prepared by using the biosilicification reaction, in which ...
A cost-effective design of reusable enzyme-functionalized particles with better catalytic activity i...
Enzymes are versatile biocatalysts with major advantages of ultrahigh reaction selectivity and speci...
Enzymes are versatile biocatalysts with major advantages of ultrahigh reaction selectivity and speci...
A cost-effective design of reusable enzyme-functionalized particles with better catalytic activity i...
A magnetically recoverable biocatalyst has been effectively prepared through the immobilization of α...
Objective(s): Enzyme immobilization via nanoparticles is perfectly compatible against the other chem...
BackgroundImmobilization of lipase on appropriate solid supports is one way to improve their stabili...
BackgroundImmobilization of lipase on appropriate solid supports is one way to improve their stabili...
BackgroundImmobilization of lipase on appropriate solid supports is one way to improve their stabili...
Polyethylenimine (PEI) as a spacer-arm polymer was modified on amine-functioned Fe3O4 nanoparticles ...
Magnetic silica composite particles were prepared by using the biosilicification reaction, in which ...
Free laccase has limitations for its use in industrial applications that require laccase immobilizat...
Ferromagnetic nanomaterials can easily be separated from the reaction media by using external magnet...
Ferromagnetic nanomaterials can easily be separated from the reaction media by using external magnet...
Magnetic silica composite particles were prepared by using the biosilicification reaction, in which ...
A cost-effective design of reusable enzyme-functionalized particles with better catalytic activity i...
Enzymes are versatile biocatalysts with major advantages of ultrahigh reaction selectivity and speci...
Enzymes are versatile biocatalysts with major advantages of ultrahigh reaction selectivity and speci...
A cost-effective design of reusable enzyme-functionalized particles with better catalytic activity i...
A magnetically recoverable biocatalyst has been effectively prepared through the immobilization of α...
Objective(s): Enzyme immobilization via nanoparticles is perfectly compatible against the other chem...