AI Article Synopsis

  • The article discusses the creation of tube-like microchannels from UV curable polymer on glass, which allows for high-sensitivity electrochemical detection using a disposable enzyme-working electrode.
  • The design features a unique face-to-face probing setup, making it easy to replace contaminated or degraded working electrodes without altering the main device structure.
  • The study demonstrates effective glucose detection using glucose oxidase-coated electrodes, showing a linear response for glucose concentrations from 2-16 mM and highlighting the impact of thermal treatment on enzyme electrode performance.

Article Abstract

This article describes the fabrication of tube-like microchannels made of UV curable polymer on a glass substrate and the device assembling with a disposable enzyme-working electrode for high-sensitivity electrochemical detection. While both reference and counter electrodes are patterned on the surface of the glass substrate, the working electrode is flipped on the top of the channel with an open access, providing a face-to-face probing configuration. When the enzyme electrode is contaminated or degraded, it can be easily replaced by a new one, keeping the main body of the device and the detection schema unchanged. Using glucose oxidase-coated gold electrodes, we were able to determine a linear amperometry response to the glucose concentrations in the range of 2-16  mM. By replacing the as-prepared working electrode by the one after thermal treatments, we showed a much more degraded enzyme electrode activity, enabling efficient determination of the electrode quality as well as the whole process optimization.

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Source
http://dx.doi.org/10.1002/elps.201100355DOI Listing

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