化学气相输运法合成ZnO/CdZnS/CdS芯壳纳米电缆阵列,用于高效光电化学制氢

Yoon Myung, D. Jang, Yong Jei Sohn, Tae Kwang Sung, G. Jung, Y. Cho, H. Kim, Jeunghee Park
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引用次数: 0

摘要

在大面积Ti衬底上合成了垂直排列的高密度ZnO/CdZnS/CdS核壳纳米阵列。采用化学气相输运的方法将外层沉积在垂直排列的ZnO纳米线阵列上。它们的壳组成受生长温度和反应时间的控制。结构和光学分析表明,在ZnO芯和CdS壳之间的界面区域形成了CdZnS合金,通过减少晶格失配来增强电荷分离。我们认为,CdZnS中间层的形成有助于提高ZnO-CdS纳米电缆的光电电池性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesized of ZnO/CdZnS/CdS core-shell nano cable arrays using by chemical vapor transport method for highly efficient photoelectrochemical hydrogen generation
Vertically-aligned high-density ZnO/CdZnS/CdS core-shell nanocable arrays were synthesized on large-area Ti substrates. The outer layers were deposited on the pre-grown vertically-aligned ZnO nanowire arrays, using the chemical vapor transport method. Their shell composition controlled by growth temperature and reaction time. The structural and optical analysis suggests the formation of CdZnS alloy in the interface region between the ZnO core and CdS shell, which would enhance the charge separation by reducing the lattice mismatch. We suggest that the formation of the CdZnS intermediate layers contributes to the higher photoelectrochemical cell performance of the ZnO-CdS nanocables.
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