Low-temperature fabrication of brown TiO2 with enhanced photocatalytic activities under visible lightElectronic supplementary information (ESI) available. See DOI: 10.1039/c5cc09176d

Here we report a facile one-step low-temperature solution-based method to treat native TiO 2 with NaH. The NaH treatment effectively induces the Ti( iii ) species and oxygen vacancies into the TiO 2 host lattice, and enables the absorption edge of TiO 2 to be conveniently adjusted from the UV region...

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Main Authors Wang, Mingzheng, Nie, Biao, Yee, Ka-Kit, Bian, Haidong, Lee, Chris, Lee, Hung Kay, Zheng, Bo, Lu, Jian, Luo, Linbao, Li, Yang Yang
Format Journal Article
Published 09.02.2016
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Abstract Here we report a facile one-step low-temperature solution-based method to treat native TiO 2 with NaH. The NaH treatment effectively induces the Ti( iii ) species and oxygen vacancies into the TiO 2 host lattice, and enables the absorption edge of TiO 2 to be conveniently adjusted from the UV region to the red end of the visible spectrum. Brown-colored TiO 2 with the absorption edge in red light was fabricated using a facile one-step treatment in NaH solutions.
AbstractList Here we report a facile one-step low-temperature solution-based method to treat native TiO 2 with NaH. The NaH treatment effectively induces the Ti( iii ) species and oxygen vacancies into the TiO 2 host lattice, and enables the absorption edge of TiO 2 to be conveniently adjusted from the UV region to the red end of the visible spectrum. Brown-colored TiO 2 with the absorption edge in red light was fabricated using a facile one-step treatment in NaH solutions.
Author Nie, Biao
Luo, Linbao
Yee, Ka-Kit
Zheng, Bo
Wang, Mingzheng
Lu, Jian
Lee, Chris
Li, Yang Yang
Lee, Hung Kay
Bian, Haidong
AuthorAffiliation Centre for Functional Photonics
Department of Biology and Chemistry
Centre for Advanced Structural Materials
Hefei University of Technology
School of Electronic Science and Applied Physics
Center Of Super-Diamond and Advanced Films (COSDAF)
City University of Hong Kong
Department of Chemistry
Department of Mechanical and Biomedical Engineering
and Center for Advanced Structural Materials
Chinese University of Hong Kong
and Department of Physics and Materials Science
City University of Hong Kong Shenzhen Research Institute
AuthorAffiliation_xml – name: Chinese University of Hong Kong
– name: Hefei University of Technology
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– name: School of Electronic Science and Applied Physics
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