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Hierarchical ZnO Decorated with CeO2 Nanoparticles as the Direct Z-Scheme Heterojunction for Enhanced Photocatalytic Activity

机译:具有CEO2纳米粒子的等级ZnO作为直接Z方案异质结,用于增强的光催化活性

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Development of a high-efficiency heterojunction with an improved photocatalytic property is regarded as a promising way to decontaminate wastewater. Herein, the direct novel Z-scheme heterojunction formed between CeO2 nanoparticles and hierarchical ZnO was synthesized through the wet chemistry method and then the heat-treatment technique. The as-synthesized ZnO/CeO2 composites display highly enhanced photocatalytic rhodamine B (RhB) degradation compared with pristine ZnO and CeO2. Specifically, ZnO/CeO2-3 (mass fraction of CeO2, 30%) shows good photostability and the best removal efficiency for photodegradated RhB, which are almost 2.5 and 1.7 times than pristine ZnO and CeO2, respectively. On the basis of the detailed characterizations and the degradation behavior of as-prepared samples over RhB, the formed heterojunction between the hierarchical ZnO and CeO2 nanoparticles is confirmed as the direct Z-scheme heterojunction. The heterojunction system shows fast transfer, high-efficiency separation, and long lifetime of photoinduced charge carriers, as well as enhanced redox capacity. This study affords a novel approach to construct ZnO-based Z-scheme heterojunctions for the photocatalytic applications.
机译:具有改进的光催化性质的高效异质结的研制被认为是对废水进行净化的有希望的方式。这里,通过湿化学方法合成在CEO2纳米颗粒和等级ZnO之间形成的直接新的Z配方异质结,然后通过湿化学方法合成,然后进行热处理技术。与原始ZnO和CeO2相比,AS合成的ZnO / CeO2复合材料显示出高度增强的光催化罗丹明B(RHB)降解。具体而言,ZnO / CeO 2-3(CeO2的质量分数,30%)显示出光稳定性的良好光稳定性和光降解的RHB的最佳去除效率,分别比原始ZnO和CeO2分别为近2.5%和1.7倍。基于RHB上制备的样品的详细表征和降解行为,将等级ZnO和CeO2纳米颗粒之间的形成的异质结被证实为直接Z方案异质结。异质结系统显示出快速的转移,高效分离和光漏电荷载体的长寿,以及增强的氧化还原容量。该研究提供了一种新建的方法来构建基于ZnO的Z形方案杂交功能,用于光催化应用。

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