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ORUDZHEV, F. MUSLIMOV, A. SELIMOV, D. GULAKHMEDOV, R. LAVRIKOV, A. KANEVSKY, V. GASIMOV, R. KRASNOVA, V. SOBOLA, D.
Original Title
Oxygen Vacancies and Surface Wettability: Key Factors in Activating and Enhancing the Solar Photocatalytic Activity of ZnO Tetrapods
Type
journal article in Web of Science
Language
English
Original Abstract
This paper reports on the high photocatalytic activity of ZnO tetrapods (ZnO-Ts) using visible/solar light and hydrodynamic water flow. It was shown that surface oxygen defects are a key factor in the photocatalytic activity of the ZnO-Ts. The ability to control the surface wettability of the ZnO-Ts and the associated concentration of surface defects was demonstrated. It was demonstrated that the photocatalytic activity during the MB decomposition process under direct and simulated sunlight is essentially identical. This presents excellent prospects for utilizing the material in solar photocatalysis.
Keywords
zinc oxide; wettability; oxygen vacancies; sunlight; photocatalysis
Authors
ORUDZHEV, F.; MUSLIMOV, A.; SELIMOV, D.; GULAKHMEDOV, R.; LAVRIKOV, A.; KANEVSKY, V.; GASIMOV, R.; KRASNOVA, V.; SOBOLA, D.
Released
15. 11. 2023
Publisher
MDPI
Location
BASEL
ISBN
1422-0067
Periodical
International Journal of Molecular Sciences
Year of study
24
Number
22
State
Swiss Confederation
Pages from
1
Pages to
18
Pages count
URL
https://www.mdpi.com/1422-0067/24/22/16338
Full text in the Digital Library
http://hdl.handle.net/11012/245123
BibTex
@article{BUT187464, author="Farid {Orudzhev} and Arsen {Muslimov} and Daud {Selimov} and Rashid {Gulakhmedov} and Alexankder {Lavrikov} and Vladimir {Kanevsky} and R.D. {Gasimov} and Valeryia {Krasnova} and Dinara {Sobola}", title="Oxygen Vacancies and Surface Wettability: Key Factors in Activating and Enhancing the Solar Photocatalytic Activity of ZnO Tetrapods", journal="International Journal of Molecular Sciences", year="2023", volume="24", number="22", pages="1--18", doi="10.3390/ijms242216338", issn="1422-0067", url="https://www.mdpi.com/1422-0067/24/22/16338" }