A facile one-step strategy for in-situ fabrication of WO3-BiVO4 nanoarrays for solar-driven photoelectrochemical water splitting applications
Author:
Publisher
Elsevier BV
Subject
General Materials Science,Renewable Energy, Sustainability and the Environment
Reference34 articles.
1. Efficient solar water splitting by enhanced charge separation in a bismuth vanadate-silicon tandem photoelectrode;Abdi;Nat. Commun.,2013
2. Nature and light dependence of bulk recombination in co-pi-catalyzed BiVO4 photoanodes;Abdi;J. Phys. Chem. C,2012
3. Quantifying bulk and surface recombination processes in nanostructured water splitting photocatalysts via in situ ultrafast spectroscopy;Appavoo;Nano Lett.,2015
4. Room-temperature synthesis of TiO2 nanospheres and their solar driven photoelectrochemical hydrogen production;Avasare;Int. J. Energy Res.,2015
5. Efficient photocatalytic activity of water oxidation over WO3/BiVO4 composite under visible light irradiation;Chatchai;Electrochim. Acta,2009
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2. Architecture of a Long-Wavelength Visible–Light–Driven N-Doped WO3/BiVO4 Heterojunction Structure for Highly Efficient Photoelectrochemical Water Splitting;Industrial & Engineering Chemistry Research;2024-07-22
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