Hydrothermal deposition of CdS on vertically aligned ZnO nanorods for photoelectrochemical solar cell application

被引:0
|
作者
Araa Mebdir Holi
Zulkarnain Zainal
Zainal Abidin Talib
Hong-Ngee Lim
Chi-Chin Yap
Sook-Keng Chang
Asmaa Kadim Ayal
机构
[1] Universiti Putra Malaysia,Materials Synthesis and Characterization Laboratory, Institute of Advanced Technology
[2] Universiti Putra Malaysia,Department of Chemistry, Faculty of Science
[3] Al-Qadisiyah University,Department of Physics, College of Education
[4] Universiti Putra Malaysia,Department of Physics, Faculty of Science
[5] Universiti Putra Malaysia,Functional Devices Laboratory, Institute of Advanced Technology
[6] Universiti Kebangsaan Malaysia,School of Applied Physics, Faculty of Science and Technology
[7] Baghdad University,Department of Chemistry, College of Science for Women
来源
Journal of Materials Science: Materials in Electronics | 2016年 / 27卷
关键词
Growth Time; Photocurrent Density; HMTA; Photoconversion Efficiency; Photoelectrochemical Performance;
D O I
暂无
中图分类号
学科分类号
摘要
CdS/ZnO nanorods composite nanofilms were successfully synthesized via hydrothermal method on indium doped tin oxide glass substrates. Sequentially deposited CdS formed cauliflower like nanostructures on vertically aligned ZnO nanorods. The morphological, compositional, structural and optical properties of the films were characterized by field emission scanning electron microscopy, energy dispersive X-ray analysis, X-ray diffraction and ultraviolet–visible spectroscopy. Photoelectrochemical conversion efficiencies were evaluated by photocurrent measurements in a mixture of Na2S and Na2SO3 akaline aqueous solution. The amount of deposit, as well as the diameter and crystallinity of the CdS cauliflower were found to increase with growth time. CdS/ZnO nanorods composite exhibited greater photocurrent response than ZnO nanorod arrays. Besides, the composite film with 90 min of growth duration displayed the highest photocurrent density which is nearly four times greater than plain ZnO nanorods under the illumination of halogen light. The result exhibited remarkable photoconversion efficiency (η) of 1.92 %.
引用
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页码:7353 / 7360
页数:7
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