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Formation and characterization of gray Ta2O5 and its enhanced photocatalytic hydrogen generation activity
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Formation and characterization of gray Ta2O5 and its enhanced photocatalytic hydrogen generation activity

Wei-Szu Liu, Ming-Wei Liao, Sheng-Hsin Huang, Yves Ira A. Reyes, Hsin-Yi Tiffany ChenTsong-Pyng Perng
International Journal of Hydrogen Energy
2020

摘要

DFT calculations Gray Ta2O5 IPCE Oxygen vacancy Photocatalytic hydrogen generation Surface disorder Renewable Energy Sustainability and the Environment Fuel Technology Condensed Matter Physics Energy Engineering and Power Technology
White and gray Ta 2 O 5 powders were fabricated by sol-gel and then annealed at 850 °C in air and vacuum, respectively. Analyses by Raman spectroscopy, X-ray photoelectron spectroscopy, transmission electron microscopy, electron paramagnetic resonance spectroscopy, UV-visible reflectance spectroscopy, photoluminescence spectroscopy, and density functional theory calculations indicated that oxygen vacancies are formed on the surface of gray Ta 2 O 5 , resulting in a disordered shell and more absorption of visible light. Its surface concentration ratio of oxygen to tantalum was determined to be 2.31. It generated 48% higher photocatalytic hydrogen than that of the white one, and cycling test indicated that it remained stable during 12 h irradiation. It also exhibited higher incident photon-to-current conversion efficiency than that of white Ta 2 O 5 in the wavelength range of 300–600 nm.

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