Ultrathin dual layers of TiO 2 and Ni have been used to stabilize polycrystalline BiVO 4 photoanodes against photocorrosion in an aqueous alkaline (pH = 13) electrolyte. Conformal, amorphous TiO 2 layers were deposited on BiVO 4 thin films by atomic-layer deposition, with Ni deposited onto the TiO 2 by sputtering. Under simulated air mass 1.5 illumination, the dual-layer coating extended the lifetime of the BiVO 4 photoanodes during photoelectrochemical water oxidation from minutes, for bare BiVO 4, to hours, for the modified electrodes. X-ray photoelectron spectroscopy showed that these layers imparted chemical stability to the semiconductor/electrolyte interface. Transmission electron microscopy revealed the structure and morphology of the polycrystalline BiVO 4 film as well as of the thin coating layers. This work demonstrates that protection schemes based on ultrathin corrosion-resistant overlayers can be applied beneficially to polycrystalline photoanode materials under conditions relevant to efficient solar-driven water-splitting systems.
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McDowell et al. (2014) studied this question.
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