Origin of the Activity of Electrochemical Ozone Production Over Rutile PbO2 Surfaces
Jin‐Tao Jiang,
Zhongyuan Guo,
Shao‐Kang Deng
et al.
Abstract:Ozonation water treatment technology has attracted increasing attention due to its environmental benign and high efficiency. Rutile PbO2 is a promising anode material for electrochemical ozone production (EOP). However, the reaction mechanism underlying ozone production catalyzed by PbO2 was rarely studied and not well‐understood, which was in part due to the overlook of the electrochemistry‐driven formation of oxygen vacancy (OV) of PbO2. Herein, we unrevealed the origin of the EOP activity of PbO2 starting f… Show more
The electrocatalyst-electrolyte interface complicates identifying true structure–activity relationships and reaction mechanisms. Surface state analysis can resolve conflicting views on surface-active phases and their corresponding performance.
The electrocatalyst-electrolyte interface complicates identifying true structure–activity relationships and reaction mechanisms. Surface state analysis can resolve conflicting views on surface-active phases and their corresponding performance.
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