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构建 Z 型 Ti/Ga 共掺杂 ZnO 异质结构光催化剂,负载石墨相氮化碳,用于高效可见光驱动染料降解。

Construction of Z-scheme Ti/Ga co-doped ZnO heterostructure photocatalyst with graphitic carbon nitride for efficient visible-light-driven dye degradation.

机构信息

College of Materials and Chemical Engineering, Key Laboratory of Inorganic Nonmetallic Crystalline and Energy Conversion Materials, China Three Gorges University, Yichang, 443002, China.

Hubei Three Gorges Laboratory, Yichang, 443007, China.

出版信息

Environ Sci Pollut Res Int. 2023 Mar;30(15):43702-43713. doi: 10.1007/s11356-023-25276-2. Epub 2023 Jan 20.

Abstract

Innovative solar-driven heterostructure photocatalysts are promising for removing the organic contaminants in the water environment. In this work, a sequence of well-defined Z-scheme Ti-Ga co-doped ZnO/g-CN (TGZ/CN) heterostructure photocatalysts were developed via a simple sol-gel method and the single-phase dispersion method in order to realize the cooperative improvement from the Ti/Ga co-doping and construction of heterostructure. The synthesized samples were analyzed by a variety of characterization techniques, and the photocatalytic activity was assessed by photodegradation of methylene blue (MB) under visible light irradiation. Compared to the ZnO and g-CN, the TGZ/CN composite demonstrated higher photocatalytic performance for the degradation of MB indicating an efficient photocatalytic degradation rate of 95.4% in 105 min under visible light. Moreover, the TGZ/CN photocatalyst exhibited excellent stability after five cycles of MB photodegradation. Furthermore, the as-prepared composites' possible photocatalytic mechanism was discussed in detail. The improved photocatalytic performance primarily resulted from the effectively reduced band gap of ZnO after Ti/Ga co-doping and the facilitated separation of photoexcited e/h pairs caused by the construction of Z-scheme heterojunction. This work offers novel insights in developing hybrids with highly efficient photocatalytic activity towards future environmental applications.

摘要

创新性的太阳能驱动的异质结构光催化剂有望去除水环境中的有机污染物。在这项工作中,通过简单的溶胶-凝胶法和单相分散法开发了一系列具有良好定义的 Z 型 Ti-Ga 共掺杂 ZnO/g-CN(TGZ/CN)异质结构光催化剂,以实现 Ti/Ga 共掺杂和构建异质结构的协同改进。通过多种表征技术对合成的样品进行了分析,并通过可见光照射下亚甲基蓝(MB)的光降解评估了光催化活性。与 ZnO 和 g-CN 相比,TGZ/CN 复合材料对 MB 的降解表现出更高的光催化性能,表明在可见光下 105 分钟内的有效光催化降解率为 95.4%。此外,TGZ/CN 光催化剂在五次 MB 光降解循环后表现出优异的稳定性。此外,详细讨论了所制备复合材料的可能光催化机制。光催化性能的提高主要归因于 Ti/Ga 共掺杂后 ZnO 带隙的有效降低以及 Z 型异质结构建引起的光生电子/空穴对的有效分离。这项工作为开发具有高效光催化活性的用于未来环境应用的杂化材料提供了新的思路。

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