|
Volumn 33, Issue 7, 2013, Pages 4313-4322
|
Development of bimetal-grown multi-scale carbon micro-nanofibers as an immobilizing matrix for enzymes in biosensor applications
|
Author keywords
Activated carbon microfibers; Biosensor; Carbon nanofibers; Glucose oxidase; Immobilization
|
Indexed keywords
BIOSENSOR APPLICATIONS;
CARBON MICROFIBERS;
CHEMICAL VAPOR DEPOSITIONS (CVD);
ELECTROCHEMICAL STABILITIES;
ELECTRON DISPERSIVE X-RAY ANALYSIS;
ELECTRON TRANSFER RATES;
IMMOBILIZATION MATRICES;
PHYSICOCHEMICAL PROPERTY;
ACTIVATED CARBON;
BIMETALS;
BIOSENSORS;
CARBON NANOFIBERS;
CHEMICAL VAPOR DEPOSITION;
ELECTRON TRANSITIONS;
ENZYME IMMOBILIZATION;
GLUCOSE;
GLUCOSE OXIDASE;
GLUCOSE SENSORS;
NANOPARTICLES;
RADIOACTIVE WASTE VITRIFICATION;
SCANNING ELECTRON MICROSCOPY;
TRANSITION METALS;
TRANSMISSION ELECTRON MICROSCOPY;
ELECTROCHEMICAL ELECTRODES;
CARBON;
CHARCOAL;
COPPER;
GLUCOSE;
GLUCOSE OXIDASE;
IMMOBILIZED ENZYME;
IRON;
METAL;
NANOFIBER;
ADSORPTION;
ASPERGILLUS NIGER;
CALIBRATION;
CHEMISTRY;
ELECTROCHEMICAL ANALYSIS;
ELECTRODE;
ENZYMOLOGY;
GENETIC PROCEDURES;
INFRARED SPECTROSCOPY;
METABOLISM;
OXIDATION REDUCTION REACTION;
PROCEDURES;
REPRODUCIBILITY;
SPECTROMETRY;
SURFACE PROPERTY;
TIME;
ULTRASOUND;
ULTRASTRUCTURE;
ACTIVATED CARBON MICROFIBERS;
ARTICLE;
BIOSENSOR;
CARBON NANOFIBERS;
IMMOBILIZATION;
METHODOLOGY;
ADSORPTION;
ASPERGILLUS NIGER;
BIOSENSING TECHNIQUES;
CALIBRATION;
CARBON;
CHARCOAL;
COPPER;
ELECTROCHEMICAL TECHNIQUES;
ELECTRODES;
ENZYMES, IMMOBILIZED;
GLUCOSE;
GLUCOSE OXIDASE;
IRON;
METALS;
NANOFIBERS;
OXIDATION-REDUCTION;
REPRODUCIBILITY OF RESULTS;
SONICATION;
SPECTROMETRY, X-RAY EMISSION;
SPECTROSCOPY, FOURIER TRANSFORM INFRARED;
SURFACE PROPERTIES;
TIME FACTORS;
ACTIVATED CARBON MICROFIBERS;
BIOSENSOR;
CARBON NANOFIBERS;
GLUCOSE OXIDASE;
IMMOBILIZATION;
|
EID: 84881167512
PISSN: 09284931
EISSN: None
Source Type: Journal
DOI: 10.1016/j.msec.2013.06.030 Document Type: Article |
Times cited : (14)
|
References (30)
|