11 February 2020 Crystallite, optical, and photoelectrochemical properties of three-dimensional ZnO/CdS photoelectrodes synthesized by hydrothermal approach
Jiangang Jiang, Shichao Zong, Wenyi Ren, He Wang
Author Affiliations +
Abstract

A series of ZnO/CdS photoelectrodes with three-dimensional (3-D) structure were synthesized by two-step hydrothermal method. The photoelectrodes were characterized by x-ray diffraction, UV–vis absorption spectrum, and field emission scanning electron microscope. The results confirmed that all samples have similar hierarchical structure composed of CdS sheets and ZnO nanorod. In particular, the sample fabricated by the CdCl2 precursor as the Cd source gave the wider band gap and more porous structure. The photoelectrochemical performance of the samples was estimated by photocurrent density testing in the solution under irradiation. The sample prepared by the CdCl2 precursor exhibited higher photocurrent density than the other three samples due to its 3-D structure, wider band gap, and more porous morphology.

© 2020 Society of Photo-Optical Instrumentation Engineers (SPIE) 1947-7988/2020/$28.00 © 2020 SPIE
Jiangang Jiang, Shichao Zong, Wenyi Ren, and He Wang "Crystallite, optical, and photoelectrochemical properties of three-dimensional ZnO/CdS photoelectrodes synthesized by hydrothermal approach," Journal of Photonics for Energy 10(2), 023505 (11 February 2020). https://doi.org/10.1117/1.JPE.10.023505
Received: 3 December 2019; Accepted: 22 January 2020; Published: 11 February 2020
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KEYWORDS
Zinc oxide

Cadmium sulfide

Crystal optics

Absorption

Crystals

Nanorods

Scanning electron microscopy

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