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It was also found that the background current at the electrode increased with the increasing working potential; however, it dropped at the working potential of 400 V.
The working potential is set at −0.25 V as the reduction potential.
However, a distorted signal was obtained when the working potential of 400 V was applied.
These measurements were used to obtain the optimum working potential for cell detection.
Thus, −0.30 V was chosen as the working potential for the detection of H2O2.
The working potential was −1.60 V vs. Ag/AgCl to allow direct comparison with literature values.
GluA was measured by amperometry at a working potential of 0.6 V vs Ag/AgCl.
Cyclic voltammetry (CV) and galvanostatic charge/discharge (GCD) analyses were performed at a working potential of 0 1 V.
This study shows that optical yield depends on the working potential and the proton donating ability of the solution.
The working potential windows of 5CBD, 20CBD and 40CBD electrodes were 3.35, 2.4 and 1.75 V vs. Ag/AgCl respectively.
The free energy diagram of the ORR predicted that for the most favorable pathway, the working potential is 0.27 V.
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