Detection and quantification of redox transformations involved in water oxidation electrocatalysis is often not possible using conventional techniques. Herein, use of large amplitude Fourier transformed ac voltammetry and comprehensive analysis of the higher harmonics has enabled us to access the redox processes responsible for catalysis. An examination of the voltammetric data for water oxidation in borate buffered solutions (pH 9.2) at electrodes functionalized with systematically varied low loadings of cobalt (CoOx), manganese (MnOx), and nickel oxides (NiOx) has been undertaken, and extensive experiment-simulation comparisons have been introduced for the first time. Analysis shows that a single redox process controls the rate of catalys...
The electrochemical oxidation of organics in water at metal oxide electrodes was investigated with t...
Water oxidation in the neutral pH regime catalyzed by amorphous transition-metal oxides is of high i...
The development of high-performance oxygen evolution reaction (OER) catalysts is crucial to achieve ...
Detection and quantification of redox transformations involved in water oxidation electrocatalysis i...
Summary: Identifying surface active intermediate species is essential to reveal the catalytic mechan...
Manganese oxide (MnOx) electrocatalysts are examined herein by in situ soft X-ray absorption spectro...
Manganese oxide (MnOx) electrocatalysts are examined herein by in situ soft X‐ray absorption spectro...
Manganese oxide (MnOx) electrocatalysts are examined herein by in situ soft X‐ray absorption spectro...
Photochemical metal–organic deposition (PMOD) was used to prepare amorphous metal oxide films contai...
Transition metal oxides are promising electrocatalysts for water oxidation, i.e., the oxygen evoluti...
Development of electrocatalysts for the conversion of water to dioxygen is important in a variety of...
Electrocatalytic water oxidation occurs at fluoride-doped tin oxide (FTO) electrodes that have been ...
We are developing a finite-difference model to describe the kinetics for the electrochemical oxidati...
There has been an abundance of publications over the last twenty years on electrode materials propos...
Molecular catalysis of water oxidation has been intensively investigated, but its mechanism is still...
The electrochemical oxidation of organics in water at metal oxide electrodes was investigated with t...
Water oxidation in the neutral pH regime catalyzed by amorphous transition-metal oxides is of high i...
The development of high-performance oxygen evolution reaction (OER) catalysts is crucial to achieve ...
Detection and quantification of redox transformations involved in water oxidation electrocatalysis i...
Summary: Identifying surface active intermediate species is essential to reveal the catalytic mechan...
Manganese oxide (MnOx) electrocatalysts are examined herein by in situ soft X-ray absorption spectro...
Manganese oxide (MnOx) electrocatalysts are examined herein by in situ soft X‐ray absorption spectro...
Manganese oxide (MnOx) electrocatalysts are examined herein by in situ soft X‐ray absorption spectro...
Photochemical metal–organic deposition (PMOD) was used to prepare amorphous metal oxide films contai...
Transition metal oxides are promising electrocatalysts for water oxidation, i.e., the oxygen evoluti...
Development of electrocatalysts for the conversion of water to dioxygen is important in a variety of...
Electrocatalytic water oxidation occurs at fluoride-doped tin oxide (FTO) electrodes that have been ...
We are developing a finite-difference model to describe the kinetics for the electrochemical oxidati...
There has been an abundance of publications over the last twenty years on electrode materials propos...
Molecular catalysis of water oxidation has been intensively investigated, but its mechanism is still...
The electrochemical oxidation of organics in water at metal oxide electrodes was investigated with t...
Water oxidation in the neutral pH regime catalyzed by amorphous transition-metal oxides is of high i...
The development of high-performance oxygen evolution reaction (OER) catalysts is crucial to achieve ...