Here, we have reported a new approach for utilizing oleic acid-Pluronic L-64 block copolymer coated iron oxide nanoparticles as supports for enzyme immobilization. Iron oxide nanoparticles were prepared by a coprecipitation method and were coated with oleic acid and Pluronic to achieve higher stability and dispersibility. The surface morphology and size of the particle, as determined by transmission electron microscopy (TEM), was +/- 10 nm. X-ray diffraction (XRD) patterns were taken over a range from 10 degrees to 90 degrees 20, using Cu K alpha radiation. Saturation magnetization values, measured at 300 K, varied from 34.6 emu/g to 60.8 emu/g. The possible interaction behavior of oleic acid and Pluronic was observed by Fourier transform i...
The immobilization of biocatalysts on magnetic nanomaterial surface is a very attractive alternative...
In this paper we report a facile method for preparing co-immobilized enzyme and magnetic nanoparticl...
Herein, silica (SiO2) extracted from treated oil palm leaves ash (TOPLA) was coated over Fe3O4 (SiO2...
Enzymes are highly specific biocatalysts and their properties and application can be improved by imm...
BackgroundImmobilization of lipase on appropriate solid supports is one way to improve their stabili...
Synthesis of surface modified/multi-functional nanoparticles has become a vital research area of mat...
In this research, lipase produced from the bacteria Pseudomonas aeruginosa was immobilized on rice h...
Lipase-immobilized nanomaterials with high activity and stable reusability would have a great impact...
The Fe 3 O 4 magnetic nanoparticles were prepared by precipitating ferrous ion (Fe 2+ ) and ferric i...
We have prepared and studied iron-oxide nanoparticles coated with oleic acid (OA) and Pluronic® poly...
In last few decades the demand of lipase has been dramatically increase due to its useful use in num...
Recombinant Bacillus subtilis lipase was immobilised on magnetic nanoparticles by a facile covalent ...
Recombinant Bacillus subtilis lipase was immobilised on magnetic nanoparticles by a facile covalent ...
Magnetic nanoparticles (MNp) Fe3O4 were prepared by chemical coprecipitation, and introduced onto co...
Snowman-like Fe 3 O 4 /Au nanoparticles (NPs), made up of small Au nanoparticles grown on larger mag...
The immobilization of biocatalysts on magnetic nanomaterial surface is a very attractive alternative...
In this paper we report a facile method for preparing co-immobilized enzyme and magnetic nanoparticl...
Herein, silica (SiO2) extracted from treated oil palm leaves ash (TOPLA) was coated over Fe3O4 (SiO2...
Enzymes are highly specific biocatalysts and their properties and application can be improved by imm...
BackgroundImmobilization of lipase on appropriate solid supports is one way to improve their stabili...
Synthesis of surface modified/multi-functional nanoparticles has become a vital research area of mat...
In this research, lipase produced from the bacteria Pseudomonas aeruginosa was immobilized on rice h...
Lipase-immobilized nanomaterials with high activity and stable reusability would have a great impact...
The Fe 3 O 4 magnetic nanoparticles were prepared by precipitating ferrous ion (Fe 2+ ) and ferric i...
We have prepared and studied iron-oxide nanoparticles coated with oleic acid (OA) and Pluronic® poly...
In last few decades the demand of lipase has been dramatically increase due to its useful use in num...
Recombinant Bacillus subtilis lipase was immobilised on magnetic nanoparticles by a facile covalent ...
Recombinant Bacillus subtilis lipase was immobilised on magnetic nanoparticles by a facile covalent ...
Magnetic nanoparticles (MNp) Fe3O4 were prepared by chemical coprecipitation, and introduced onto co...
Snowman-like Fe 3 O 4 /Au nanoparticles (NPs), made up of small Au nanoparticles grown on larger mag...
The immobilization of biocatalysts on magnetic nanomaterial surface is a very attractive alternative...
In this paper we report a facile method for preparing co-immobilized enzyme and magnetic nanoparticl...
Herein, silica (SiO2) extracted from treated oil palm leaves ash (TOPLA) was coated over Fe3O4 (SiO2...