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Direct Electrochemistry of Glucose Oxidase and Biosensing for Glucose Based on Graphene

Analytical Chemistry · 2009 · Vol. 81(6) · pp. 2378–2382
Changsheng ShanHuafeng YangJiangfeng SongDongxue HanAri IvaskaLi Niu

Abstract

We first reported that polyvinylpyrrolidone-protected graphene was dispersed well in water and had good electrochemical reduction toward O(2) and H(2)O(2). With glucose oxidase (GOD) as an enzyme model, we constructed a novel polyvinylpyrrolidone-protected graphene/polyethylenimine-functionalized ionic liquid/GOD electrochemical biosensor, which achieved the direct electron transfer of GOD, maintained its bioactivity and showed potential application for the fabrication of novel glucose biosensors with linear glucose response up to 14 mM.

Electrochemical sensors and biosensorsConducting polymers and applicationsAdvanced biosensing and bioanalysis techniquesGlucose oxidaseChemistryBiosensorGraphenePolyvinylpyrrolidonePolyethylenimineElectrochemistryElectron transferNanotechnologyCombinatorial chemistry

MeSH terms

CarbonElectron TransportGlucoseGlucose OxidaseOxidation-ReductionPolyethyleneiminePovidoneBiosensing TechniquesIonic LiquidsElectrochemical Techniques

Funding

  • Åbo Akademi
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