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首页> 外文期刊>RSC Advances >Fabrication and excellent visible-light-driven photodegradation activity for antibiotics of SrTiO3 nanocube coated CdS microsphere heterojunctions
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Fabrication and excellent visible-light-driven photodegradation activity for antibiotics of SrTiO3 nanocube coated CdS microsphere heterojunctions

机译:SRTIO3纳米型涂层CDS微球抗生素抗生素的制造和优异的可见光光降解活性

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摘要

Extending the light absorption range and facilitating the separation of photoinduced carriers are effective strategies in the process of improving photocatalysis. An effective method is to construct a heterostructure. In this work, a new heterojunction, CdS/SrTiO _(3) , was synthesized via a two step hydrothermal route and designed to decontaminate hazardous wastewater containing antibiotics under visible light irradiation. Specially, the efficient photocatalytic performance of the composites could be ascribed to the enhancement of visible light absorption efficiency and the efficient separation of the photoexcited carriers originating from the heterointerface. Furthermore, a plausible photocatalytic mechanism has been discussed in detail based on trap experiments and ESR analysis results. The CdS/SrTiO _(3) heterojunction has potential to be applied for purifying antibiotic pollutants in environmental wastewater because of its high efficiency and stability.
机译:延伸光吸收范围并促进光诱导载体的分离是改善光催化的过程中的有效策略。一种有效的方法是构建异质结构。在这项工作中,通过两步水热途径合成新的异质结,CDS / SRTIO _(3),并设计成在可见光照射下抵消含有抗生素的危险废水。特别是,复合材料的有效光催化性能可以归因于可见光吸收效率的增强以及源自异质接触的光透镜载体的有效分离。此外,已经基于陷阱实验和ESR分析结果详细讨论了一种可符合的光催化机制。 CDS / SRTIO _(3)异质结具有应用于纯化环境废水中的抗生素污染物,因为其高效率和稳定性。

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