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Direct Electrochemical Reduction of Single-Layer Graphene Oxide and Subsequent Functionalization with Glucose Oxidase

The Journal of Physical Chemistry C · 2009 · Vol. 113(32) · pp. 14071–14075
Zhijuan WangXiaozhu ZhouJuan ZhangFreddy BoeyHua Zhang

Abstract

A direct electrochemical method to reduce single-layer graphene oxide (GO) adsorbed on the 3-aminopropyltriethoxysilane (APTES)-modified conductive electrodes is proposed. The reduced GO adsorbed on glassy carbon electrode was modified with glucose oxidase (GOx) by covalent bonding via a polymer generated by electrografting N-succinimidyl acrylate (NSA). The direct electron transfer between the electrode and GOx molecules was realized. The bioactivity of GOx maintains very well on the electrode. The thus-prepared GOx-modified electrode was successfully used to detect glucose.

Electrochemical sensors and biosensorsGraphene and Nanomaterials ApplicationsConducting polymers and applicationsGrapheneGlucose oxidaseElectrodeSurface modificationOxideElectrochemistryMaterials scienceGlassy carbonAcrylateAdsorption

Funding

  • Ministry of Earth Sciences
  • Ministry of Education, India
Citations
674
FWCI
66.90
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References
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References
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Journal of the American Chemical Society · 2008 · 3,582 citations
Exfoliated Graphene Separated by Platinum Nanoparticles
Chemistry of Materials · 2008 · 1,115 citations
Facile Synthesis and Characterization of Graphene Nanosheets
The Journal of Physical Chemistry C · 2008 · 2,074 citations
Graphene−Metal Particle Nanocomposites
The Journal of Physical Chemistry C · 2008 · 1,545 citations
Graphene-Based Ultracapacitors
Nano Letters · 2008 · 8,262 citations
Decorating Graphene Sheets with Gold Nanoparticles
The Journal of Physical Chemistry C · 2008 · 910 citations
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