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Photoelectrochemical Performance of CdS/ZnSe Core/Shell Nanorods Grown on FTO Substrates for Hydrogen Generation

Authors
Cho, Ki-HyunSung, Yun-Mo
Issue Date
2017
Publisher
ELECTROCHEMICAL SOC INC
Citation
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, v.164, no.6, pp.11382 - 11388
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF THE ELECTROCHEMICAL SOCIETY
Volume
164
Number
6
Start Page
11382
End Page
11388
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/86377
DOI
10.1149/2.1281706jes
ISSN
0013-4651
Abstract
One-dimensional nanostructured CdS/ZnSe core/shell photoelectrodes were prepared to show improved photocatalytic properties compared to CdS thin film photoelectrodes. The enhanced surface area and the type-II energy band structure originating from the nanorod growth and ZnSe nanoparticle decoration, respectively, are attributed to the improved photoelectrochemical performance. A mild solution based approach enabled the formation of uniform and high-density CdS nanorods having a diameter and a length of similar to 15-20 nm and <1 mu m, respectively. As-synthesized CdS nanorods were uniformly coated with ZnSe nanoparticles to form ZnSe shell with similar to 3 nm thickness using a spin coating method. According to the energy bandgaps of CdS nanorods and ZnSe nanoparticles estimated by UV-Visible spectrum analyses, their energy band alignment was expected to be the type-II band structure. This type-II band structure could induce the charge separation of carriers in the semiconductor electrodes and in turn could accelerate the photocatalytic reactions for efficient water splitting not only at lower but also at higher bias voltages compared to CdS thin film electrodes and bare CdS nanorod electrodes. (C) 2017 The Electrochemical Society. All rights reserved.
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Sung, Yun Mo
공과대학 (신소재공학부)
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