<div><h3>Background</h3><p>Biocatalytic processes often require a full recycling of biocatalysts to optimize economic benefits and minimize waste disposal. Immobilization of biocatalysts onto particulate carriers has been widely explored as an option to meet these requirements. However, surface properties often affect the amount of biocatalysts immobilized, their bioactivity and stability, hampering their wide applications. The aim of this work is to explore how immobilization of lipases onto magnetite nanoparticles affects their biocatalytic performance under carefully controlled surface modification.</p> <h3>Methodology/Principal Findings</h3><p>Magnetite nanoparticles, prepared through a co-precipitation method, were coated with alkyl si...
This work presents a novel hydrophobic magnetizable nanosupport able to load and valorize the lipase...
Lipase B from Candida antarctica (CAL-B) is largely employed as a biocatalyst for hydrolysis, esteri...
BackgroundImmobilization of lipase on appropriate solid supports is one way to improve their stabili...
BACKGROUND: Biocatalytic processes often require a full recycling of biocatalysts to optimize econom...
Biocatalytic processes often require a full recycling of biocatalysts to optimize economic benefits ...
Biocatalytic processes often require a full recycling of biocatalysts to optimize economic benefits ...
Background: Biocatalytic processes often require a full recycling of biocatalysts to optimize econom...
The immobilization of biocatalysts on magnetic nanomaterial surface is a very attractive alternative...
Lipase-immobilized nanomaterials with high activity and stable reusability would have a great impact...
The immobilization of biocatalysts on magnetic nanomaterial surface is a very attractive alternative...
The immobilization of biocatalysts on magnetic nanomaterial surface is a very attractive alternative...
The immobilization of biocatalysts on magnetic nanomaterial surface is a very attractive alternative...
A cost-effective design of reusable enzyme-functionalized particles with better catalytic activity i...
A cost-effective design of reusable enzyme-functionalized particles with better catalytic activity i...
The combination of magnetic nanoparticles and mesoporous silica can present a strategy for enzyme im...
This work presents a novel hydrophobic magnetizable nanosupport able to load and valorize the lipase...
Lipase B from Candida antarctica (CAL-B) is largely employed as a biocatalyst for hydrolysis, esteri...
BackgroundImmobilization of lipase on appropriate solid supports is one way to improve their stabili...
BACKGROUND: Biocatalytic processes often require a full recycling of biocatalysts to optimize econom...
Biocatalytic processes often require a full recycling of biocatalysts to optimize economic benefits ...
Biocatalytic processes often require a full recycling of biocatalysts to optimize economic benefits ...
Background: Biocatalytic processes often require a full recycling of biocatalysts to optimize econom...
The immobilization of biocatalysts on magnetic nanomaterial surface is a very attractive alternative...
Lipase-immobilized nanomaterials with high activity and stable reusability would have a great impact...
The immobilization of biocatalysts on magnetic nanomaterial surface is a very attractive alternative...
The immobilization of biocatalysts on magnetic nanomaterial surface is a very attractive alternative...
The immobilization of biocatalysts on magnetic nanomaterial surface is a very attractive alternative...
A cost-effective design of reusable enzyme-functionalized particles with better catalytic activity i...
A cost-effective design of reusable enzyme-functionalized particles with better catalytic activity i...
The combination of magnetic nanoparticles and mesoporous silica can present a strategy for enzyme im...
This work presents a novel hydrophobic magnetizable nanosupport able to load and valorize the lipase...
Lipase B from Candida antarctica (CAL-B) is largely employed as a biocatalyst for hydrolysis, esteri...
BackgroundImmobilization of lipase on appropriate solid supports is one way to improve their stabili...