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      Picoamperometric Detection of Glucose at Ultrasmall Platinum-Based Biosensors:  Preparation and Characterization

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      Analytical Chemistry
      American Chemical Society (ACS)

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          Abstract

          A simple method is described for the construction of a glucose biosensor with good reproducibility. After electrochemical etching, the sensing tip of an etched platinum microelectrode was insulated using a synthetic rubber dip coating. The insulating layer was then heat-cured, leading to a small exposed area at the very end of the etched Pt tip, as confirmed by scanning electron microscopy. Phenol and 2-allylphenol were electropolymerized to form an extra insulating layer that effectively retained glucose oxidase (GOX) on the sensing tip of the electrode. On the basis of cyclic voltammetry measurements, the apparent radius of the biosensor tip was estimated to be between 10 and 500 nm, depending on GOX loading. With operational and storage stabilities over 3 weeks, the glucose biosensor prepared using optimal GOX concentration (10 mg/mL) exhibited a picoamperometric current response within approximately 2 s and a detection limit of 20 microM with excellent reproducibility.

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          Author and article information

          Journal
          Analytical Chemistry
          Anal. Chem.
          American Chemical Society (ACS)
          0003-2700
          1520-6882
          July 2003
          July 2003
          : 75
          : 14
          : 3308-3315
          Article
          10.1021/ac026438u
          14570178
          52fa52cb-c943-4ebd-9c60-4ce4abcdd4bf
          © 2003
          History

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