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通过新颖的加热方法优化层状 ZnO/TiO 纳米薄膜的物理化学性质,用于光催化降解抗生素和染料。

Optimizing physico-chemical properties of hierarchical ZnO/TiO nano-film by the novel heating method for photocatalytic degradation of antibiotics and dye.

机构信息

School of Mechanics and Engineering Science, Zhengzhou University, Zhengzhou 450001, China.

School of Mechanics and Engineering Science, Zhengzhou University, Zhengzhou 450001, China.

出版信息

Chemosphere. 2024 Jan;346:140392. doi: 10.1016/j.chemosphere.2023.140392. Epub 2023 Oct 17.

DOI:10.1016/j.chemosphere.2023.140392
PMID:37852380
Abstract

The design of semiconductor catalysts with excellent photocatalytic properties, stability, recyclability, and good separation for the treatment of polluted water is still challenging. In this paper, the ZnO/TiO nano-thin films were fabricated using the magnetron sputtering technique and then heating the underlying ZnO layer and the upper TiO layer for their respective optimal heating time, i. e. heating ZnO for 3 h and heating TiO for 2 h. The as-prepared films were characterized. The results show that the preferred growth of TiO grains along the [001] axis, relatively large specific surface area, and increased amounts of surface oxygen vacancies (OVs) were induced to the heterojunction catalysts through this optimized heating strategy, which boosts the photocatalytic activity of ZnO/TiO nano-film. The degradation experiment inndicates that the ciprofloxacin (CIP) removal efficiency can reach 97.3% in 2 h duration, which was higher than that of the samples annealed for the same periods. Meanwhile, the prepared ZnO/TiO photocatalytic film exhibited favorable stability of 95.5% degradation efficiency after the fourth run and general applicability for the photodegradation of various contantains, whih removed 99.5% of ofloxacin (OFX) and 77.6% of tetracycline (TC) in 2 h and 94.1% of Rhodamine B (RhB) in 1 h. This work is expected to yields a novel insight into the production of heterojunction photocatalysts with excellen ability for photocatalytic degradation of pollutants in the practical industry.

摘要

设计具有优异光催化性能、稳定性、可回收性和良好分离性能的半导体催化剂,用于处理污染水仍然具有挑战性。本文采用磁控溅射技术制备了 ZnO/TiO 纳米薄膜,并对底层 ZnO 层和上层 TiO 层进行了各自的最佳加热时间加热,即加热 ZnO 3 小时,加热 TiO 2 小时。对所制备的薄膜进行了表征。结果表明,通过这种优化的加热策略,TiO 晶粒沿[001]轴的择优生长、较大的比表面积和增加的表面氧空位(OVs)被引入到异质结催化剂中,从而提高了 ZnO/TiO 纳米薄膜的光催化活性。降解实验表明,在 2 小时内,环丙沙星(CIP)的去除效率可达 97.3%,高于相同时间段退火的样品。同时,所制备的 ZnO/TiO 光催化薄膜在第四次运行后表现出良好的稳定性,降解效率为 95.5%,对各种污染物的光降解具有普遍适用性,在 2 小时内去除了 99.5%的氧氟沙星(OFX)和 77.6%的四环素(TC),在 1 小时内去除了 94.1%的罗丹明 B(RhB)。这项工作有望为具有优异光催化降解污染物能力的异质结光催化剂的生产提供新的思路,在实际工业中有应用前景。

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