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Direct sunlight-active Na-doped ZnO photocatalyst for the mineralization of organic pollutants at different pH mediums
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Direct sunlight-active Na-doped ZnO photocatalyst for the mineralization of organic pollutants at different pH mediums

Mohamed Hammad Elsayed, Taha M. Elmorsi, Ahmed M. Abuelela, Ahmed E. Hassan, Ahmed Zaki Alhakemy, Mostafa F. BakrHo-Hsiu Chou
Journal of the Taiwan Institute of Chemical Engineers, 卷.115, 頁碼.187-197
10/2020

摘要

DFT calculations Direct sunlight Na-doped ZnO Photocatalytic degradation Precipitation method Chemistry (all) Chemical Engineering (all)
This work reports the preparation of Na-doped ZnO (Na-ZnO) as a promising photocatalyst under sunlight through a very simple precipitation method. The crystal and electronic structures of the prepared Na-ZnO were characterized by experimental techniques and Density Functional Theory (DFT) calculations. Where the DFT calculations revealed that the effect of Na-doping on the ZnO electronic structure is consistent with the experimental observations and the bandgap value found to be decreasing. Under direct sunlight, the as-prepared Na-ZnO decolorized more than 99.5% of the methylene blue dye (MB) after 1.5 h and led to mineralization of 98.3% of it after 3 h. While pure ZnO decolorized only 35% of MB dye at the same conditions. The prepared Na-ZnO has a promising photocatalytic activity at different pH's and high photostability reaching to 7 recycle with the same efficiency. Finally, the primary active species produced during the photocatalytic reaction were determined and the photocatalytic mechanism was elucidated.

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