In metal oxide-based photoelectrochemical devices, the spatial separation of photogenerated electrons and holes is typically attributed to band-bending at the oxide/electrolyte interface. However, direct evidence of such band-bending impacting upon charge carrier lifetimes has been very limited to date. Herein we use ultrafast spectroscopy to track the rapid relaxation of holes in the space-charge layer and their recombination with trapped electrons in WO3 photoanodes. We observe that applied bias can significantly increase carrier lifetimes on all time scales from picoseconds to seconds and attribute this to enhanced band-bending correlated with changes in oxygen vacancy state occupancy. We show that analogous enhancements in carrier lifet...
Oxygen vacancies are widely used to tune the light absorption of semiconducting metal oxides, but a ...
Due to its ∼2.4 eV band gap, BiVO4 is a very promising photoanode material for harvesting the blue p...
Due to its ∼2.4 eV band gap, BiVO4 is a very promising photoanode material for harvesting the blue p...
Oxygen vacancies are common to most metal oxides, whether intentionally incorporated or otherwise, a...
A thorough understanding of the kinetic competition between desired water oxidation/electron extract...
A thorough understanding of the kinetic competition between desired water oxidation/electron extract...
Oxygen vacancies are widely used to tune the light absorption of semiconducting metal oxides, but a ...
Defects in powder photocatalysts determine the photocatalytic activity. The addition of defects some...
Defects in powder photocatalysts determine the photocatalytic activity. The addition of defects some...
The four hole oxidation of water has long been considered the kinetic bottleneck for overall solar-d...
Transient absorption spectroscopy (TAS) has been employed to identify the spectra of photogenerated ...
Oxygen vacancies are widely used to tune the light absorption of semiconducting metal oxides, but a ...
The photoanodic response of two different types of nanocrystalline WO3 electrodes prepared by follow...
Oxygen vacancies are widely used to tune the light absorption of semiconducting metal oxides, but a ...
Transient absorption spectroscopy (TAS) has been employed to identify the spectra of photogenerated ...
Oxygen vacancies are widely used to tune the light absorption of semiconducting metal oxides, but a ...
Due to its ∼2.4 eV band gap, BiVO4 is a very promising photoanode material for harvesting the blue p...
Due to its ∼2.4 eV band gap, BiVO4 is a very promising photoanode material for harvesting the blue p...
Oxygen vacancies are common to most metal oxides, whether intentionally incorporated or otherwise, a...
A thorough understanding of the kinetic competition between desired water oxidation/electron extract...
A thorough understanding of the kinetic competition between desired water oxidation/electron extract...
Oxygen vacancies are widely used to tune the light absorption of semiconducting metal oxides, but a ...
Defects in powder photocatalysts determine the photocatalytic activity. The addition of defects some...
Defects in powder photocatalysts determine the photocatalytic activity. The addition of defects some...
The four hole oxidation of water has long been considered the kinetic bottleneck for overall solar-d...
Transient absorption spectroscopy (TAS) has been employed to identify the spectra of photogenerated ...
Oxygen vacancies are widely used to tune the light absorption of semiconducting metal oxides, but a ...
The photoanodic response of two different types of nanocrystalline WO3 electrodes prepared by follow...
Oxygen vacancies are widely used to tune the light absorption of semiconducting metal oxides, but a ...
Transient absorption spectroscopy (TAS) has been employed to identify the spectra of photogenerated ...
Oxygen vacancies are widely used to tune the light absorption of semiconducting metal oxides, but a ...
Due to its ∼2.4 eV band gap, BiVO4 is a very promising photoanode material for harvesting the blue p...
Due to its ∼2.4 eV band gap, BiVO4 is a very promising photoanode material for harvesting the blue p...