Bismuth vanadate is a promising photoanode material, but recent reports on undoped BiVO_4 without sublayers and co-catalysts showed large variations in photocurrent generation. We addressed this issue by correlating photoelectrochemical performance with physical properties. We devised a novel anodic electrodeposition procedure with iodide added to the aqueous plating bath, which allowed us to prepare BiVO_4 photoanodes with virtually identical thicknesses but different morphologies, and we could control surface Bi content. Morphologies were quantified from SEM images as distributions of crystallite areas and aspect-ratio-normalised diameters, and their statistical moments were derived. We could obtain clear photocurrent generation trends on...
Bismuth vanadate (BiVO4) has surface states that give rise to defect levels that mediate electron-ho...
Bismuth vanadate (BiVO4) is a promising semiconductor material for the production of solar fuels via...
Bismuth vanadate BiVO4 has surface states that give rise to defect levels that mediate electron ho...
Bismuth vanadate is a promising photoanode material, but recent reports on undoped BiVO_4 without su...
Bismuth vanadate has recently emerged as a promising photoanode material for solar water splitting a...
Alloying transition metals, such as Mo, into BiVO_4 has emerged as the primary mechanism for improvi...
The effects of annealing treatment between 400 °C and 540 °C on crystallization behavior, grain size...
Alloying transition metals, such as Mo, into BiVO_4 has emerged as the primary mechanism for improvi...
Alloying transition metals, such as Mo, into BiVO_4 has emerged as the primary mechanism for improvi...
Improving the efficiency of solar-powered oxygen evolution is both critical for development of solar...
Bismuth vanadate (BiVO4) is one of the most efficient light absorbing metal oxides for solar water ...
Bismuth vanadate (BiVO4) have surface states that give rise to defect levels that mediate electron-h...
Bismuth vanadate (BiVO4) is one of the most efficient light absorbing metal oxides for solar water s...
Bismuth vanadate (BiVO4) is one of the most efficient light absorbing metal oxides for solar water s...
Bismuth vanadate (BiVO4) is one of the most efficient light absorbing metal oxides for solar water s...
Bismuth vanadate (BiVO4) has surface states that give rise to defect levels that mediate electron-ho...
Bismuth vanadate (BiVO4) is a promising semiconductor material for the production of solar fuels via...
Bismuth vanadate BiVO4 has surface states that give rise to defect levels that mediate electron ho...
Bismuth vanadate is a promising photoanode material, but recent reports on undoped BiVO_4 without su...
Bismuth vanadate has recently emerged as a promising photoanode material for solar water splitting a...
Alloying transition metals, such as Mo, into BiVO_4 has emerged as the primary mechanism for improvi...
The effects of annealing treatment between 400 °C and 540 °C on crystallization behavior, grain size...
Alloying transition metals, such as Mo, into BiVO_4 has emerged as the primary mechanism for improvi...
Alloying transition metals, such as Mo, into BiVO_4 has emerged as the primary mechanism for improvi...
Improving the efficiency of solar-powered oxygen evolution is both critical for development of solar...
Bismuth vanadate (BiVO4) is one of the most efficient light absorbing metal oxides for solar water ...
Bismuth vanadate (BiVO4) have surface states that give rise to defect levels that mediate electron-h...
Bismuth vanadate (BiVO4) is one of the most efficient light absorbing metal oxides for solar water s...
Bismuth vanadate (BiVO4) is one of the most efficient light absorbing metal oxides for solar water s...
Bismuth vanadate (BiVO4) is one of the most efficient light absorbing metal oxides for solar water s...
Bismuth vanadate (BiVO4) has surface states that give rise to defect levels that mediate electron-ho...
Bismuth vanadate (BiVO4) is a promising semiconductor material for the production of solar fuels via...
Bismuth vanadate BiVO4 has surface states that give rise to defect levels that mediate electron ho...