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glucose biosensor
The properties of a glucose biosensor made by immobilization of glucose oxidase onto gelatin in a layer of electrochemically deposited polyaniline have been investigated.
      
New amperometric glucose biosensor by entrapping glucose oxidase into chitosan/nanoporous ZrO2/multiwalled carbon nanotubes nano
      
A new nanocomposite material for construction of glucose biosensor was prepared.
      
Glucose Biosensor Using Glucose Oxidase Immobilized in Polyaniline
      
Sol-gel-derived prussian blue-silicate amperometric glucose biosensor
      
The influence is discussed of ascorbic acid (AA) on the response of a glucose biosensor based on glucose oxidase immobilized in electropolymerized poly(ophenylenediamine) (PPD) or overoxidized poly(pyrrole) (oxPPy) films on a Pt electrode.
      
An amperometric glucose biosensor employing Meldola blue dispersed in polyester ionomer as electron transfer mediator was prepared to test the feasibility and workability of the composite membrane as immobilization matrix for glucose oxidase.
      
Performance and characteristics of the glucose biosensor were evaluated with respect to response time, detection limit, applied potential, thickness of polyester ionomer membrane, pH and temperature.
      
The glucose biosensor possesses a variety of advantages including easy maintenance of enzyme, simplicity of construction, fast response time and high stability.
      
A stable glucose biosensor prepared by co-immobilizing glucose oxidase into poly(p-chlorophenol) at a platinum electrode
      
An amperometric glucose biosensor was successfully developed by electrochemical polymerization of p-chlorophenol (4-CP) at a Pt electrode in the presence of glucose oxidase.
      
Glucose biosensor based on glucose oxidase immobilized in sol-gel chitosan/silica hybrid composite film on Prussian blue modifie
      
An optical glucose biosensor based on glucose oxidase immobilized on a swim bladder membrane
      
An optical glucose biosensor using a swim bladder membrane as an enzyme immobilization platform and an oxygen-sensitive membrane as an optical oxygen transducer has been developed.
      
The glucose biosensor has been successfully applied to the determination of glucose content in human blood serum and urine samples.
      
Biocomposites of covalently linked glucose oxidase on carbon nanotubes for glucose biosensor
      
Construction of glucose biosensor based on sorption of glucose oxidase onto multilayers of polyelectrolyte/nanoparticles
      
A mediator-free glucose biosensor, termed a "third-generation biosensor," was fabricated by immobilizing glucose oxidase (GOD) directly onto an oxidized boron-doped diamond (BDD) electrode.
      
The benefits of using graphite modified with Pt+Pd (mixture ratio 30%:70%) as the basic transducer in a glucose biosensor with improved sensitivity were demonstrated.
      
Specifically, we utilized the ASNPs with optimal size (30?nm) to fabricate the glucose biosensor.
      
 

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