Fog-harvesting performance of hydrophobic zinc oxide nanorods combined with nanoscale roughness on the topmost surface

Zinc oxide nanorods (ZnO-NRs) were prepared on a Si wafer by hydrothermal processing (single-roughness ZnO-NRs). Subsequently, some samples were treated using hydrothermal processing again under an alkaline condition to produce nanoscale roughness on the topmost surface ({0001}) of the rod (double-r...

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Veröffentlicht in:Journal of the Ceramic Society of Japan 2020/11/01, Vol.128(11), pp.847-854
Hauptverfasser: KANO, Takahiro, HIROSAWA, Takuya, ISOBE, Toshihiro, MATSUSHITA, Sachiko, NAKAJIMA, Akira
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Sprache:eng
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Zusammenfassung:Zinc oxide nanorods (ZnO-NRs) were prepared on a Si wafer by hydrothermal processing (single-roughness ZnO-NRs). Subsequently, some samples were treated using hydrothermal processing again under an alkaline condition to produce nanoscale roughness on the topmost surface ({0001}) of the rod (double-roughness ZnO-NRs). The obtained samples possessed the expected structure and were coated with a hydrophobic fluoroalkyl silane. These samples consequently became highly hydrophobic. The double-roughness ZnO-NRs exhibited higher sliding angles than the single-roughness ZnO-NRs. The double-roughness ZnO-NRs fog-harvesting performance was better than that of the smooth FAS9 coating or the single-roughness ZnO-NRs. The time dependence of the entire harvested water amount corresponds to the theoretical calculation. The droplet overlapping is expected to affect the results obtained for the double-roughness ZnO-NRs.
ISSN:1882-0743
1348-6535
DOI:10.2109/jcersj2.20080