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首页> 外文期刊>Materials Research Bulletin: An International Journal Reporting Research on Crystal Growth and Materials Preparation and Characterization >Fabrication of multi-scale CdS/ZnO heteroarchitectures with boosted dual photocatalytic activities for hydrogen generation and organic dye degradation under solar light
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Fabrication of multi-scale CdS/ZnO heteroarchitectures with boosted dual photocatalytic activities for hydrogen generation and organic dye degradation under solar light

机译:在太阳光下制备具有增强双光催化活性的多尺度CdS/ZnO异质结构,用于制氢和有机染料降解

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摘要

Binary multi-scale CdS/ZnO heterogeneous architectures comprised of zero-dimensional (0D) CdS nanoparticles depositing onto 3D flower-like architectures self-aggregated by 2D ZnO nanoflakes have been successfully fabricated by a facile aqueous chemical process. The H2-generation rate of the optimized CZ-3 is calculated to be 15.682 mmol g-1 h-1 under simulated solar irradiation, which is 15.25, 101.17 and 39.70 times higher than that of pristine ZnO, bare CdS, and the physical mixture, respectively. The photocatalytic oxidation kinetics rate constant over the optimal CZ-3 in degradation of Congo red is measured to be 0.05686 min-1 under simulated sunlight, which reaches 7.21, 9.07, 5.82 folds higher than that of pristine ZnO, pure CdS, and the physical mixture, respectively. The dual boosted photocatalytic performance of CdS/ZnO composite is assigned to the synergetic multi-scale heteroarchitecture with the interfacial heterojunction. The photocatalytic electron transfer mechanism is proposed based on the perfect band matching and the free radical experiments.
机译:通过简单的水化学工艺,成功地制备了由零维(0D)CdS纳米颗粒沉积到由2D ZnO纳米片自聚集的3D花状结构上的二元多尺度CdS/ZnO异质结构。在模拟太阳辐照下,优化后的CZ-3的H2生成速率分别为15.682 mmol g-1 h-1,分别是原始ZnO、裸CdS和物理混合物的15.25、101.17和39.70倍。在模拟阳光下,CZ-3在刚果红降解过程中的光催化氧化动力学速率常数为0.05686 min-1,分别是纯ZnO、纯CdS和物理混合物的7.21、9.07和5.82倍。CdS/ZnO复合材料的双重增强光催化性能被赋予了与界面异质结的协同多尺度异质结构。基于完美能带匹配和自由基实验,提出了光催化电子转移机理.

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