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The current density of RGO modified electrodes was nearly 10-times higher than the controls.
The electrochemical behaviour of InHCF modified electrodes was studied by cyclic voltammetry (CV).
The electrochemistry behavior of hydrazine on different modified electrodes was also studied.
Investigation on the electrochemical property of the modified electrodes was also carried out using Chronoamperometry.
In comparison with a fluidic glucose sensor having only flat electrodes, the detection sensitivity for the sensor with nanopillar modified electrodes was five times higher.
The surface morphology and structure characterization of the modified electrodes was characterized by scanning electron microscopy, energy dispersive X-ray spectroscopy and cyclic voltammetry.
Similar(39)
All of the modified electrodes were stored at 4°C.
The surface morphology of the bare GCE and modified electrodes were characterized by SEM and TEM.
The modified electrodes were found to be microporous and rough.
InHCF film modified electrodes are very stable under CV scanning.
The modified electrodes were applied to the reduction of nitrobenzene.
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