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Enhanced Photocatalytic Ozonation Using Modified TiO2 with Designed Nucleophilic and Electrophilic Sites.
Liu, Shaozhi; Zhai, Guangyao; Zhang, Honggang; Si, Shenghe; Liu, Yuanyuan; Mao, Yuyin; Wang, Zeyan; Cheng, Hefeng; Wang, Peng; Zheng, Zhaoke; Dai, Ying; Huang, Baibiao.
Afiliação
  • Liu S; Shandong University, State Key Laboratory of Crystal Materials, Jinan, Jinan, CHINA.
  • Zhai G; University of Science and Technology of China, School of Chemistry and Materials Science, Anhui, Anhui, CHINA.
  • Zhang H; Shandong University, State Key Laboratory of Crystal Materials, Jinan, Jinan, CHINA.
  • Si S; University of Science and Technology of China, School of Chemistry and Materials Science, Anhui, hefei, CHINA.
  • Liu Y; Shandong University, State Key Laboratory of Crystal Materials, Jinan, Jinan, CHINA.
  • Mao Y; Shandong University, State Key Laboratory of Crystal Materials, Jinan, Jinan, CHINA.
  • Wang Z; Shandong University, State Key Laboratory of Crystal Materials, Jinan, Jinan, CHINA.
  • Cheng H; Shandong University, State Key Laboratory of Crystal Materials, Jinan, Jinan, CHINA.
  • Wang P; Shandong University, State Key Laboratory of Crystal Materials, Jinan, Jinan, CHINA.
  • Zheng Z; Shandong University, State Key Laboratory of Crystal Materials, Jinan, Jinan, CHINA.
  • Dai Y; Shandong University, School of Physics, Jinan, Jinan, CHINA.
  • Huang B; Shandong University, State Key Laboratory of Crystal Materials, 250100, Jinan, CHINA.
Chemistry ; : e202401380, 2024 Jul 10.
Article em En | MEDLINE | ID: mdl-38987889
ABSTRACT
Photocatalytic ozonation is considered to be a promising approach for the treatment of refractory organic pollutants, but the design of efficient catalyst remains a challenge. Surface modification provides a potential strategy to improve the activity of photocatalytic ozonation. In this work, density functional theory (DFT) calculations were first performed to check the interaction between O3 and TiO2-OH (surface hydroxylated TiO2) or TiO2-F (surface fluorinated TiO2), and the results suggest that TiO2-OH displays better O3 adsorption and activation than does TiO2-F, which is confirmed by experimental results. The surface hydroxyl groups greatly promote the O3 activation, which is beneficial for the generation of reactive oxygen species (ROS). Importantly, TiO2-OH displays better performance towards pollutants (such as berberine hydrochloride) removal than does TiO2-F and most reported ozonation photocatalysts. The total organic carbon (TOC) removal efficiency reaches 84.4% within two hours. This work highlights the effect of surface hydroxylation on photocatalytic ozonation and provides ideas for the design of efficient photocatalytic ozonation catalysts.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article