Surface Functionalization of Grown-on-Tip ZnO Nanopyramids: From Fabrication to Light-Triggered Applications

We report on a combined chemical vapor deposition (CVD)/radio frequency (RF) sputtering synthetic strategy for the controlled surface modification of ZnO nanostructures by Ti-containing species. Specifically, the proposed approach consists in the CVD of grown-on-tip ZnO nanopyramids, followed by tit...

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Veröffentlicht in:ACS applied materials & interfaces 2019-05, Vol.11 (17), p.15881-15890
Hauptverfasser: Gasparotto, Alberto, Maccato, Chiara, Carraro, Giorgio, Sada, Cinzia, Štangar, Urška Lavrenčič, Alessi, Bruno, Rocks, Conor, Mariotti, Davide, La Porta, Andrea, Altantzis, Thomas, Barreca, Davide
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Sprache:eng
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Zusammenfassung:We report on a combined chemical vapor deposition (CVD)/radio frequency (RF) sputtering synthetic strategy for the controlled surface modification of ZnO nanostructures by Ti-containing species. Specifically, the proposed approach consists in the CVD of grown-on-tip ZnO nanopyramids, followed by titanium RF sputtering under mild conditions. The results obtained by a thorough characterization demonstrate the successful ZnO surface functionalization with dispersed Ti-containing species in low amounts. This phenomenon, in turn, yields a remarkable enhancement of photoactivated superhydrophilic behavior, self-cleaning ability, and photocatalytic performances in comparison to bare ZnO. The reasons accounting for such an improvement are unravelled by a multitechnique analysis, elucidating the interplay between material chemico-physical properties and the corresponding functional behavior. Overall, the proposed strategy stands as an amenable tool for the mastering of semiconductor-based functional nanoarchitectures through ad hoc engineering of the system surface.
ISSN:1944-8244
1944-8252
DOI:10.1021/acsami.8b22744