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首页> 外文期刊>CERAMICS INTERNATIONAL >Enhanced UV- and visible-light driven photocatalytic performances and recycling properties of graphene oxide/ZnO hybrid layers
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Enhanced UV- and visible-light driven photocatalytic performances and recycling properties of graphene oxide/ZnO hybrid layers

机译:增强的UV和可见光驱动的光催化性能和石墨烯氧化物/ ZnO混合层的再循环性能

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Light induced catalytic processes have attracted significant attention during the last years for wastewater treatment due to their efficiency in decomposition of organic contaminants. In this study we report the synthesis of graphene oxide (GO)/ZnO hybrid layers with high photocatalytic efficiency using laser radiation. The results show that the hybrid layers exhibit much improved photodecomposition efficiency as compared to pure GO or ZnO both under UV and visible-light irradiation. The enhanced photocatalytic efficiency of the hybrid as compared to the reference pure ZnO and GO layers was attributed to the contribution of GO to the separation and transport of the photogenerated charge carriers. Additionally, under visible light irradiation the organic molecules can act as first sensitizers in the degradation process. The recyclability of the layers was also investigated through repetitive photodegradation cycles under UV- or visible-light irradiation. After consecutive degradation runs, the hybrid photocatalyst layers were still stable and retained high degradation efficiency, ensuring reusability. The photocatalytic activity of the layers was correlated with the gradual change of their chemical structure during consecutive degradation cycles. Owing to the high photodegradation efficiency, reusability, and ease of recovery the synthesised hybrid layers consisting of easily available materials are suitable for environmental purification applications.
机译:光诱导的催化过程在过去几年中引起了对废水处理的显着关注,因为它们的有机污染物分解的效率。在该研究中,我们通过激光辐射报告具有高光催化效率的石墨烯(GO)/ ZnO混合层的合成。结果表明,与UV和可见光照射的纯GO或ZnO相比,杂化层表现出大量改善的光致效率。与参考纯ZnO和去层相比,杂种的增强的光催化效率归因于去分离和运输光源性电荷载体的贡献。另外,在可见光照射下,有机分子可以作为降解过程中的第一敏化剂。还通过在UV-或可见光照射下通过重复的光降解循环研究层的可再循环性。连续降解运行后,杂交光催化剂层仍然稳定并保留高劣化效率,确保可重用性。在连续降解循环期间,层的光催化活性与其化学结构的逐渐变化相关。由于光降解效率高,可重用性和易于恢复,由易于使用的材料组成的合成式混合层适用于环境净化应用。

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