| Literature DB >> 26871554 |
Peng Zhang1, Takashi Tachikawa2,3, Mamoru Fujitsuka1, Tetsuro Majima4.
Abstract
With the aid of breakthroughs in nanoscience and nanotechnology, it is imperative to develop metal oxide semiconductors through visible light-driven hydrogen generation. In this study, TiOF2 was incorporated as an n-type F-dopant source to TiO2 mesocrystals (TMCs) with visible-light absorption during the topotactic transformation. The crystal growth, structural change, and dynamic morphological evolution, from the initial intermediate NH4 TiOF3 to HTiOF3, TiOF2, and F-doped TMCs, were verified through in situ temperature-dependent techniques to elucidate the doping mechanism from intermediate TiOF2. The visible-light efficiencies of photocatalytic hydrogen were dependent on the contents of the dopant as compared with the pure TMC and a controled reference. Using femtosecond time-resolved diffuse reflectance spectroscopy, the charge-transfer dynamics were monitored to confirm the improvement of charge separation after doping.Entities:
Keywords: charge-transfer; hydrogen generation; photocatalyst; titania; topotactic transformation
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Year: 2016 PMID: 26871554 DOI: 10.1002/cssc.201501558
Source DB: PubMed Journal: ChemSusChem ISSN: 1864-5631 Impact factor: 8.928