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Improved Stability of Polycrystalline Bismuth Vanadate Photoanodes by Use of Dual-Layer Thin TiO_2/Ni Coatings

机译:通过使用双层薄TiO_2 / Ni涂层提高多晶钒酸铋光阳极的稳定性

摘要

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 BiVO4 photoanodes during photoelectrochemical water oxidation from minutes, for bare BiVO4, 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.
机译:TiO_2和Ni的超薄双层已用于稳定多晶BiVO_4光电阳极,使其在碱性(pH = 13)电解质水溶液中免受光腐蚀。通过原子层沉积将保形的非晶TiO_2层沉积在BiVO_4薄膜上,通过溅射将Ni沉积在TiO_2上。在模拟的空气质量1.5照明下,双层涂层将光化学水氧化过程中BiVO4光电阳极的寿命从裸BiVO4的几分钟延长到了修饰电极的数小时。 X射线光电子能谱表明,这些层赋予了半导体/电解质界面化学稳定性。透射电子显微镜揭示了多晶BiVO_4膜以及薄涂层的结构和形态。这项工作表明,在与高效太阳能驱动的水分解系统相关的条件下,基于超薄耐腐蚀覆盖层的保护方案可以有益地应用于多晶光阳极材料。

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