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- Title
Dimensionality-dependent photocatalytic activity of TiO<sub>2</sub>-based nanostructures: nanosheets with a superior catalytic property.
- Authors
Chen, Feitai; Fang, Pengfei; Liu, Zhi; Gao, Yuanpeng; Liu, Yang; Dai, Yiqun; Luo, Huan; Feng, Jiwen
- Abstract
TiO2-based nanostructures usually possess excellent photochemical properties. However, the relationship between their dimensionality and photocatalytic activity was rarely investigated. In this study, a series of TiO2-based nanostructures in various dimensionalities (such as nanosheets, nanotubes) were obtained by hydrothermal treatment of P25, and the process of structural evolution was also systematically investigated by TEM, BET, Raman, and XRD analysis. Much higher rate constant (3.7 × 10min) for the degradation of rhodamine B was found for nanosheets, comparing with those of three-dimensional P25 nanoparticles (0.59 × 10 min) and one-dimensional nanotubes (0.85 × 10 min). It is found that the hydrothermally prepared TiO2-based nanosheets possess small thickness (ca. 5 nm) and plentiful surface hydroxyl groups, and the reason why TiO2-based nanosheets possess superior photocatalytic activity is also discussed in detail from the microstructure and surface chemical states. In addition, TiO2-based nanosheets exhibit good reusability in the cyclic experiments, implying a potential application for photocatalytic degradation of organic pollutants.
- Subjects
TITANIUM dioxide nanoparticles; PHOTOCATALYSIS; NANOFILMS; TITANIUM catalyst activity; TITANIUM oxide nanotubes; PHOTODEGRADATION; RHODAMINE B; THICKNESS measurement
- Publication
Journal of Materials Science, 2013, Vol 48, Issue 15, p5171
- ISSN
0022-2461
- Publication type
Article
- DOI
10.1007/s10853-013-7303-z