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Improved photocatalytic hydrogen evolution by facet engineering of core-shell structural CdS@ZnO

机译:通过核壳结构CdS @ ZnO的面工程改进光催化氢的释放

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The synthesis of photocatalysts with controlled facets has become an important approach to enhance the H-2 evolution activity. However, the relationship between different exposed facets of heterojunctions and photocatalytic performance still needs to be further investigated. In this study, three types of CdS@ZnO core-shell architectures with tunable heteroinnerfaces were fabricated. Hexagonal wurtzite ZnO samples with different percentages of exposed (001) facet showed up as rod-like, short rod-like and disk-like morphologies, respectively, subsequently, self-assembled flower-like CdS coated on the whole facet of ZnO, constructing a core-shell nanostructure with the corresponding tunable heterointerfaces. Under visible-light irradiation, it was discovered that the performance of hydrogen evolution is proportional to the ratio of (001) facet of ZnO in CdS@ZnO core-shell structures. Further photoelectric tests indicated that the (001) facet of ZnO by CdS modification can form a more perfect combination than that of (100) facet of ZnO, which exhibits higher electron conduction and separation performance. (C) 2019 Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.
机译:具有受控面的光催化剂的合成已经成为增强H-2析出活性的重要方法。然而,异质结的不同暴露面与光催化性能之间的关系仍需要进一步研究。在这项研究中,制造了三种类型的具有可调异质面的CdS @ ZnO核壳结构。具有不同百分比的暴露(001)刻面的六角纤锌矿型ZnO样品分别显示为棒状,短棒状和盘状形态,随后,将自组装的花状CdS覆盖在ZnO的整个面上,构建了具有相应的可调异质界面的核-壳纳米结构。在可见光照射下,发现在CdS @ ZnO核-壳结构中,析氢性能与ZnO的(001)晶面比例成正比。进一步的光电测试表明,通过CdS改性的ZnO的(001)面比具有更高的电子传导和分离性能的ZnO的(100)面可以形成更完美的结合。 (C)2019由Elsevier Ltd代表Hydrogen Energy Publications LLC发布。

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