A study on CdCl2 activation of CBD-CdS films

被引:0
作者
W. G. C. Kumarage
R. P. Wijesundera
V. A. Seneviratne
C. P. Jayalath
N. Kaur
E. Comini
N. Gunawardhana
B. S. Dassanayake
机构
[1] Sri Lanka Technological Campus,Research and International Affairs
[2] University of Kelaniya,Department of Physics
[3] University of Peradeniya,Postgraduate Institute of Science
[4] University of Peradeniya,Department of Physics
[5] Università Degli Studi Di Brescia,Department of Information Engineering
来源
Journal of Materials Science: Materials in Electronics | 2020年 / 31卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Cadmium sulfide (CdS) thin films were deposited using chemical bath deposition (CBD) technique on fluorine-doped tin oxide glass substrates. Cadmium sulfate, thiourea, and ammonium hydroxide were used as Cd source, S source, and the complexing agent, respectively in the reaction bath. The post-deposition CdCl2 activation of chemical bath deposited CdS (CBD-CdS) thin films was done by dip coating in a saturated CdCl2 bath. X-ray diffractograms show the growth of large CdS grains with better crystalline quality over the recrystallization process due to CdCl2 treatment. The development of large clusters was determined to be due to coalescence of smaller clusters. The photoelectrochemical (PEC) cell (CdS/Na2S2O3/Pt) parameters, such as VOC and ISC for CdCl2 activated CBD-CdS thin films were found to be higher compared to untreated CBD-CdS thin films. The improved effective surface area of the film and higher carrier concentration due to grain boundary passivation could be the reason for higher VOC and ISC values found in CdCl2-treated CdS films. Additionally, all the CdCl2-treated CdS films showed an increase in the optical transmittance spectra and bandgap compared to untreated CdS films. Relative energy band edge position of the grown CdS films was found to be adjustable with the CdCl2 treatment time. The best photoactivity was found for the CdS films which were dip-coated for 10 min in CdCl2 solution.
引用
收藏
页码:13330 / 13336
页数:6
相关论文
共 159 条
  • [1] Moualkia H(2009)Chemically and electrochemically deposited thin films for solar energy materials Thin Solid Films 518 1259-1262
  • [2] Hariech S(2010)undefined Thin Solid Films 518 6858-6865
  • [3] Aida MS(2000)undefined Thin Solid Films 361–362 520-526
  • [4] Wan L(1997)undefined Thin Solid Films 302 71-76
  • [5] Bai Z(2006)undefined Sol. Energy Mater. Sol. Cells 90 2263-2271
  • [6] Hou Z(1994)undefined J. Electron. Mater. 23 31-355
  • [7] Wang D(1998)undefined Vacuum 51 349-368
  • [8] Sun H(1998)undefined Sol. Energy Mater. Sol. Cells 52 361-325
  • [9] Xiong L(2003)undefined Sol. Energy Mater. Sol. Cells 76 313-68
  • [10] Ferekides CS(2016)undefined J. Phys. D. Appl. Phys. 49 95109-8