Oxide/(oxy)hydroxide overlayers such as cobalt (oxy)hydroxide phosphate (CoPi) enhance the performance of BiVO4 water-spitting photoanodes, but the mechanism of this enhancement remains unclear. We show that if the BiVO4 layer is thin and incompletely covers an underlying conductive glass, the performance dramatically decreases as CoPi loading is increased. This is consistent with direct contact between the CoPi and conducting glass that leads to “shunt” recombination of photogenerated holes accumulated in the CoPi. For thicker BiVO4 layers that completely cover the conducting glass, these shunt pathways are blocked. We then use a nanoelectrode atomic force microscopy probe to measure, in operando, the electrochemical potential of CoPi on...
The oxygen evolution is kinetically the key step in the photocatalytic water splitting. Cocatalysts ...
We studied the kinetics of photoelectrochemical (PEC) water oxidation using a model photoanode BiVO ...
Modification of the semiconductor surface by cobalt-rich catalysts is an effective strategy to impro...
This paper employs photoinduced absorption and electrochemical techniques to analyze the charge carr...
BiVO4 semiconductor electrodes were coupled with cobalt-phosphate complexes (CoPi) to enhance the ph...
In this paper, we compared for the first time the dynamics of photogenerated holes in BiVO4 photoano...
Heterogeneous electrochemical phenomena, such as (photo)electrochemical water splitting to generate ...
While prices of solar energy are becoming cost competitive with traditional fossil fuel resources, l...
In this work, spectroelectrochemical techniques are employed to analyse the catalytic water oxidatio...
Catalyst modification of metal oxide photoanodes can result in markedly improved water oxidation eff...
Despite the vast investigations on improving the photoelectrochemical performance of BiVO4 for water...
We studied the kinetics of photoelectrochemical (PEC) water oxidation using a model photoanode BiVO4...
Manipulation of interfacial charge separation and transfer is one of the primary breakthroughs to im...
We studied the kinetics of photoelectrochemical (PEC) water oxidation using a model photoanode BiVO4...
Catalyst modification of metal oxide photoanodes can result in markedly improved water oxidation eff...
The oxygen evolution is kinetically the key step in the photocatalytic water splitting. Cocatalysts ...
We studied the kinetics of photoelectrochemical (PEC) water oxidation using a model photoanode BiVO ...
Modification of the semiconductor surface by cobalt-rich catalysts is an effective strategy to impro...
This paper employs photoinduced absorption and electrochemical techniques to analyze the charge carr...
BiVO4 semiconductor electrodes were coupled with cobalt-phosphate complexes (CoPi) to enhance the ph...
In this paper, we compared for the first time the dynamics of photogenerated holes in BiVO4 photoano...
Heterogeneous electrochemical phenomena, such as (photo)electrochemical water splitting to generate ...
While prices of solar energy are becoming cost competitive with traditional fossil fuel resources, l...
In this work, spectroelectrochemical techniques are employed to analyse the catalytic water oxidatio...
Catalyst modification of metal oxide photoanodes can result in markedly improved water oxidation eff...
Despite the vast investigations on improving the photoelectrochemical performance of BiVO4 for water...
We studied the kinetics of photoelectrochemical (PEC) water oxidation using a model photoanode BiVO4...
Manipulation of interfacial charge separation and transfer is one of the primary breakthroughs to im...
We studied the kinetics of photoelectrochemical (PEC) water oxidation using a model photoanode BiVO4...
Catalyst modification of metal oxide photoanodes can result in markedly improved water oxidation eff...
The oxygen evolution is kinetically the key step in the photocatalytic water splitting. Cocatalysts ...
We studied the kinetics of photoelectrochemical (PEC) water oxidation using a model photoanode BiVO ...
Modification of the semiconductor surface by cobalt-rich catalysts is an effective strategy to impro...