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Volumn 109, Issue 8, 2009, Pages 911-915
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Fabrication of self-assembled oligophenylethynylenethiol monolayer for electrochemical glucose biosensor
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Author keywords
Atomic force microscopy; Cyclic voltammetry; Electrochemical biosensor; Glucose; Glucose oxidase; Self assembled monolayer
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Indexed keywords
AU ELECTRODES;
AU SURFACES;
DETECTION LIMITS;
ELECTRICAL PROPERTY;
ELECTROCHEMICAL BIOSENSOR;
ENZYME REACTION;
GLUCOSE BIOSENSOR;
LINEAR RELATIONSHIPS;
OXIDATION CURRENTS;
SELF-ASSEMBLED;
ATOMIC FORCE MICROSCOPY;
ATOMS;
BIOSENSORS;
ELECTRIC PROPERTIES;
ELECTROCHEMICAL ELECTRODES;
ENZYME IMMOBILIZATION;
GLUCOSE;
GLUCOSE OXIDASE;
GLUCOSE SENSORS;
GOLD;
SELF ASSEMBLED MONOLAYERS;
SIGNAL TRANSDUCTION;
SURFACE PLASMON RESONANCE;
CYCLIC VOLTAMMETRY;
4 [2 [4 (ACETYLTHIO)PHENYL]ETHYNYL]BENZOIC ACID;
BENZOIC ACID DERIVATIVE;
GLUCOSE;
GLUCOSE OXIDASE;
GOLD;
OLIGOPHENYLETHYNYLENETHIOL;
THIOL DERIVATIVE;
UNCLASSIFIED DRUG;
ARTICLE;
ATOMIC FORCE MICROSCOPY;
BIOSENSOR;
CHEMICAL STRUCTURE;
CONTROLLED STUDY;
CYCLIC POTENTIOMETRY;
ELECTROCHEMISTRY;
ELECTRODE;
ENZYME IMMOBILIZATION;
ENZYME MECHANISM;
ENZYME STRUCTURE;
OXIDATION;
SURFACE PLASMON RESONANCE;
ALKYNES;
BIOSENSING TECHNIQUES;
ELECTRICITY;
ETHERS;
GLUCOSE;
GLUCOSE OXIDASE;
GOLD;
MICROSCOPY, ATOMIC FORCE;
PROTEIN BINDING;
SURFACE PLASMON RESONANCE;
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EID: 67449128211
PISSN: 03043991
EISSN: None
Source Type: Journal
DOI: 10.1016/j.ultramic.2009.03.011 Document Type: Article |
Times cited : (4)
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References (23)
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