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The coating should have high oxygen evolution overvoltage.
There are a few electrodes with high oxygen evolution overvoltage [7, 8].
They revealed that the high oxygen evolution reaction activities resulted from pyridinic-N-related active sites [121].
However, PbO2, SnO2, TiO2 and diamond electrode seemed to be the potential anode materials with high oxygen evolution overpotentials.
Therefore, the hotspots on electrochemical technology for water and wastewater treatment related research was novel electrode, which owned high oxygen evolution overpotential and good physiochemical and electrochemical properties.
The Fe2TiO5-TiO2 yolk-shell hollow spheres exhibited high oxygen evolution reaction (OER) rate up to 148 μmol g−1 h−1 under UV vis light.
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The electrochemical measurements show that PbO2-ZrO2 nanocompositelectrodeses possess higher oxygen evolution overpotential and larger active surface area than PbO2 electrodes.
As culture density increased the chlorophyll (a + b) weakly absorbed green light penetrated deeper into the samples inducing higher oxygen evolution at culture concentration of 1.45 g L−1 compared to the chlorophyll (a + b) strongly absorbed red light.
Results show that the prepared Cu/RGO@Pb possessed higher oxygen evolution over-potential and lower hydrogen evolution over-potential than the contrast alloy, indicating this novel alloy was more suitable for using as positive grids in lead acid batteries.
With TiO2 mesoflower, the membrane anode obtained a higher oxygen evolution potential, 2.22 V (vs saturated calomel electrode), relative roughness factor (701.7), and electrochemical porosity (99.23%) than membrane anodes without TiO2 mesoflower.
Compared to conventional flat Ti/PbO2 (F-Ti/PbO2) electrode, the 3DEM-PbO2 possessed larger specific surface area (38.89 m2 g−1), higher oxygen evolution potential (OEP, 1.9 V), larger Voltammetric charge (238 mC cm−2) and smaller electron transfer resistance (1.43 Ω).
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