Orientation effects in morphology and electronic properties of anatase TiO2 one-dimensional nanostructures. I. Nanowires
By means of ab initio calculations we have revealed the existence of sizable anisotropy in electronic properties of anatase TiO 2 nanowires with respect to orientation: nanowires with 〈001〉, 〈100〉 and 〈110〉 axes are found to be direct band-gap, indirect band-gap and degenerate semiconductor material...
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Veröffentlicht in: | Physical chemistry chemical physics : PCCP 2014-01, Vol.16 (2), p.9479-9489 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | By means of
ab initio
calculations we have revealed the existence of sizable anisotropy in electronic properties of anatase TiO
2
nanowires with respect to orientation: nanowires with 〈001〉, 〈100〉 and 〈110〉 axes are found to be direct band-gap, indirect band-gap and degenerate semiconductor materials, respectively. The degenerate semiconducting properties of 〈110〉-oriented TiO
2
nanowires are predicted to be the intrinsic features closely connected with stoichiometry. A band-gap variation with nanowire diameter is also shown to display rather complex behavior characterized by a competition between quantum confinement and surface state effects that is fully compatible with the available contradictory experimental data. Finally, we propose a model to explain the band-gap variation with size in TiO
2
nanowires, nanocrystals and thin films.
We propose a model to explain the band-gap variation with size in TiO
2
nanowires, nanocrystals and thin films. |
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ISSN: | 1463-9076 1463-9084 1463-9084 |
DOI: | 10.1039/c3cp54988g |