Incorporation of Mo and W into nanostructured BiVO4 films for efficient photoelectrochemical water oxidation.
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Efficient solar water splitting by enhanced charge separation in a bismuth vanadate-silicon tandem photoelectrode.Scanning droplet cell for high throughput electrochemical and photoelectrochemical measurements.Efficient solar photoelectrolysis by nanoporous Mo:BiVO4 through controlled electron transport.A Green Desulfurization Technique: Utilization of Flue Gas SO2 to Produce H2 via a Photoelectrochemical Process Based on Mo-Doped BiVO4.Facile fabrication of BiVO4 nanofilms with controlled pore size and their photoelectrochemical performances.WO3/W:BiVO4/BiVO4 graded photoabsorber electrode for enhanced photoelectrocatalytic solar light driven water oxidation.Enhanced photoelectrochemical water oxidation of bismuth vanadate via a combined strategy of W doping and surface RGO modification.Capturing local structure modulations of photoexcited BiVO4 by ultrafast transient XAFS.Fe/W Co-Doped BiVO4 Photoanodes with a Metal-Organic Framework Cocatalyst for Improved Photoelectrochemical Stability and Activity.Bi2MoO6/BiVO4 heterojunction electrode with enhanced photoelectrochemical properties.Bandgap engineering of Fe2O3 with Cr - application to photoelectrochemical oxidation.Visible light driven overall water splitting using cocatalyst/BiVO4 photoanode with minimized bias.In situ formation of a ZnO/ZnSe nanonail array as a photoelectrode for enhanced photoelectrochemical water oxidation performance.Seedless Growth of Bismuth Nanowire Array via Vacuum Thermal Evaporation.Marked enhancement in electron-hole separation achieved in the low bias region using electrochemically prepared Mo-doped BiVO4 photoanodes.Effects of Zirconium Doping Into a Monoclinic Scheelite BiVO4 Crystal on Its Structural, Photocatalytic, and Photoelectrochemical Properties.Solution-processed multilayered BiVO4 photoanodes: influence of intermediate heat treatments on the photoactivityPlasmonic enhancement of the optical absorption and catalytic efficiency of BiVO4 photoanodes decorated with Ag@SiO2 core–shell nanoparticlesEfficient BiVO4Thin Film Photoanodes Modified with Cobalt Phosphate Catalyst and W-dopingWhy the photocatalytic activity of Mo-doped BiVO4 is enhanced: a comprehensive density functional study
P2860
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P2860
Incorporation of Mo and W into nanostructured BiVO4 films for efficient photoelectrochemical water oxidation.
description
2012 nî lūn-bûn
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2012年の論文
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2012年学术文章
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2012年学术文章
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2012年学术文章
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2012年学术文章
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2012年学术文章
@zh-sg
2012年學術文章
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name
Incorporation of Mo and W into ...... ectrochemical water oxidation.
@en
Incorporation of Mo and W into ...... ectrochemical water oxidation.
@nl
type
label
Incorporation of Mo and W into ...... ectrochemical water oxidation.
@en
Incorporation of Mo and W into ...... ectrochemical water oxidation.
@nl
prefLabel
Incorporation of Mo and W into ...... ectrochemical water oxidation.
@en
Incorporation of Mo and W into ...... ectrochemical water oxidation.
@nl
P2860
P356
P1476
Incorporation of Mo and W into ...... lectrochemical water oxidation
@en
P2093
Alexander J E Rettie
C Buddie Mullins
P2860
P304
P356
10.1039/C2CP40807D
P407
P577
2012-04-02T00:00:00Z