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Aerosol-Deposited BiVO4 Photoelectrodes for Hydrogen Generation

机译:用于氢发电的气溶胶沉积的BIVO4光电子

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Hydrogen generation from renewable energy sources will play a key role in the concerted endeavor to constrain climate change. One environmentally friendly route, powered by sunlight, is the photoelectrochemical water splitting cell (PEC). This technology employs electrodes coated with thin films of semiconductor materials to capture light and generate charge carriers that directly drive the water splitting reaction. Bismuth vanadate is a promising metal oxide semiconductor, as it absorbs visible light, and is abundant, non-toxic and cost-effective. The present study investigates the formation of bismuth vanadate thin films by the aerosol deposition (AD) method. Operating with layer formation at room temperature, AD offers advantages over other routes for the fabrication of photoactive thin film coatings, as no binders or sintering processes need to be applied. Furthermore, compared to traditional cold spraying, micrometer-sized particles can be used, resulting in coatings with thicknesses below 1 mu m. Additionally, the lower kinetic energy of the feedstock powder particles enables the use of delicate substrates, such as FTO-coated glass, expanding the range of possible PEC device configurations. The process parameters explored in this study had considerable influence on the resulting coating microstructure, which in turn showed a significant impact on the photoelectrochemical performance.
机译:可再生能源制氢将在遏制气候变化的共同努力中发挥关键作用。一种由阳光提供动力的环保路线是光电化学水分解电池(PEC)。这项技术使用涂有半导体材料薄膜的电极来捕捉光并产生电荷载体,直接驱动水分解反应。钒酸铋是一种很有前途的金属氧化物半导体,因为它吸收可见光,并且储量丰富、无毒且成本低廉。本文研究了用气溶胶沉积法(AD)制备钒酸铋薄膜。由于无需使用粘合剂或烧结工艺,AD在室温下以层形成的方式操作,因此与其他方法相比,AD在制备光活性薄膜涂层方面具有优势。此外,与传统的冷喷涂相比,可以使用微米大小的颗粒,从而形成厚度低于1μm的涂层。此外,原料粉末颗粒的较低动能使得能够使用精细的基材,例如FTO涂层玻璃,从而扩大了可能的PEC设备配置范围。本研究中探索的工艺参数对所得涂层微观结构有相当大的影响,进而对光电化学性能产生显著影响。

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