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Photoexcited Properties of Tin Sulfide Nanosheet-Decorated ZnO Nanorod Heterostructures

机译:硫化锡纳米片修饰的ZnO纳米棒异质结构的光激发特性

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摘要

In this study, ZnO–Sn2S3 core–shell nanorod heterostructures were synthesized by sputtering Sn2S3 shell layers onto ZnO rods. The Sn2S3 shell layers consisted of sheet-like crystallites. A structural analysis revealed that the ZnO–Sn2S3 core–shell nanorod heterostructures were highly crystalline. In comparison with ZnO nanorods, the ZnO–Sn2S3 nanorods exhibited a broadened optical absorption edge that extended to the visible light region. The ZnO–Sn2S3 nanorods exhibited substantial visible photodegradation efficiency of methylene blue organic dyes and high photoelectrochemical performance under light illumination. The unique three-dimensional sheet-like Sn2S3 crystallites resulted in the high light-harvesting efficiency of the nanorod heterostructures. Moreover, the efficient spatial separation of photoexcited carriers, attributable to the band alignment between ZnO and Sn2S3, accounted for the superior photocatalytic and photoelectrochemical properties of the ZnO–Sn2S3 core–shell nanorod heterostructures.
机译:在这项研究中,通过将Sn2S3壳层溅射到ZnO棒上来合成ZnO-Sn2S3核-壳纳米棒异质结构。 Sn2S3壳层由片状微晶组成。结构分析表明,ZnO-Sn2S3核-壳纳米棒异质结构是高度结晶的。与ZnO纳米棒相比,ZnO–Sn2S3纳米棒表现出更宽的光吸收边缘,延伸到可见光区域。 ZnO–Sn2S3纳米棒在可见光下表现出明显的亚甲基蓝有机染料可见光降解效率和高光电化学性能。独特的三维片状Sn2S3微晶导致纳米棒异质结构的高光收集效率。此外,归因于ZnO和Sn2S3之间的能带排列,光激发载流子的有效空间分离是ZnO–Sn 2 S 3 的优异光催化和光电化学性质的原因。核-壳纳米棒异质结构。

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