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通过串联电沉积和表面硫化制备的ZnO-ZnS/ITO一维异质结的结构和光电化学性质:论材料加工极限

The structural and the photoelectrochemical properties of ZnO-ZnS/ITO 1D hetero-junctions prepared by tandem electrodeposition and surface sulfidation: on the material processing limits.

作者信息

Brayek A, Chaguetmi S, Ghoul M, Ben Assaker I, Chtourou R, Decorse P, Beaunier P, Nowak S, Mammeri F, Ammar S

机构信息

ITODYS, Université Paris Diderot, USPC, CNRS UMR-7086 Paris France

Lab. Photovoltaïque, Centre de Recherches et des Technologies de l'Energie Technopole Borj Cedria, Faculté des Sciences Hammamm lif Tunisia.

出版信息

RSC Adv. 2018 Mar 27;8(21):11785-11798. doi: 10.1039/c8ra00176f. eCollection 2018 Mar 21.

Abstract

ZnO-ZnS 1D hetero-nanostructures were prepared by an easy and scalable processing route. It consists of ZnO nanorod electrodeposition on ITO substrate and surface sulfidation by ion exchange in an aqueous NaS solution. Increasing the treatment contact time ( ) from 8 to 48 h involves different ZnS growth mechanisms leading to different structural and microstructural rod characteristics, even if the overall size does not change significantly. Grazing X-ray diffraction, high-resolution microscopy, energy-dispersive spectrometry and X-ray photoelectron spectroscopy describe the outer surface layer as a poly- and nanocrystalline ZnS blende shell whose thickness and roughness increase with . The ZnO wurtzite-ZnS blende interface goes from continuous and dense, at short , to discontinuous and porous at long , indicating that ZnS formation proceeds in a more complex way than a simple S/O ion exchange over the treatment time. This feature has significant consequences for the photoelectrochemical performance of these materials when they are used as photoanodes in a typical light-assisted water splitting experiment. A photocurrent ( ) fluctuation of 45% for less than 5 min of operation is observed for the sample prepared with a long sulfidation time while it does not exceed 15% for that obtained with a short one, underlining the importance of the material processing conditions on the preparation of valuable photoanodes.

摘要

通过一种简便且可扩展的工艺路线制备了ZnO-ZnS一维异质纳米结构。它包括在ITO衬底上电沉积ZnO纳米棒,并在NaS水溶液中通过离子交换进行表面硫化。将处理接触时间( )从8小时增加到48小时,涉及不同的ZnS生长机制,导致不同的结构和微观结构棒状特征,即使总体尺寸没有显著变化。掠入射X射线衍射、高分辨率显微镜、能量色散光谱和X射线光电子能谱将外表面层描述为多晶和纳米晶的闪锌矿型ZnS壳层,其厚度和粗糙度随 增加。ZnO纤锌矿型-ZnS闪锌矿型界面从短 时的连续且致密,变为长 时的不连续且多孔,这表明在处理时间内,ZnS的形成过程比简单的S/O离子交换更为复杂。当这些材料在典型的光辅助水分解实验中用作光阳极时,这一特性对其光电化学性能有重大影响。对于硫化时间长的样品,在运行不到5分钟时观察到光电流( )波动为45%,而对于硫化时间短的样品,光电流波动不超过15%,这突出了材料加工条件对制备有价值光阳极的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb13/9092361/7303e1200c2e/c8ra00176f-f1.jpg

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