Enriched optoelectronic properties of cobalt-doped ZnO thin films for photodetector applications

被引:0
作者
S. Vinoth
A. M. S. Arulanantham
S. Saravanakumar
R. S. Rimal Isaac
N. Soundaram
N. Chidhambaram
Devarajan Alagarasan
S. Varadharajaperumal
Mohd. Shkir
S. AlFaify
机构
[1] Manakula Vinayagar Institute of Technology,Department of Electronics and Communication Engineering
[2] St. Joseph College of Arts and Science,Department of Physics
[3] Kalasalingam Academy of Research and Education,Department of Physics
[4] Noorul Islam Centre for Higher Education,Department of Nanotechnology
[5] Sree Sevugan Annamalai College,Department of Physics
[6] Rajah Serfoji Government College (Autonomous),Department of Physics
[7] Indian Institute of Science,Department of Physics
[8] National Institute of Technology,Optoelectronics Laboratory, Department of Physics
[9] King Khalid University,Advanced Functional Materials and Optoelectronic Laboratory (AFMOL), Department of Physics, Faculty of Science
[10] Glocal University,School of Science and Technology
来源
Journal of Materials Science: Materials in Electronics | 2021年 / 32卷
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摘要
Cobalt-doped ZnO (ZnO:Co) thin films were synthesized using the chemical bath deposition technique for their potential application in ultraviolet (UV) photosensing. All the prepared samples were characterized using XRD, FESEM, EDX, PL, XPS, and UV–Vis absorption techniques. The UV photosensing property of the thin films was examined under the illumination of UV light (365 nm). The structural and morphological investigations reveal that the ZnO:Co samples have a hexagonal wurtzite crystal structure with nanowire morphology. An increase in crystallite size and a decrease in the bandgap of the samples were observed owing to the replacement of the Co2+ ions in the regular sites of Zn2+. The PL spectra show some defect emission peaks in the visible region because of the occurrence of oxygen vacancies, which suggests a high photoabsorption property of the samples. The XPS study was performed to understand the existence of elements and their binding states in the fabricated thin films. The UV photosensing studies reveal that the highest responsivity of 0.918 AW−1 was achieved for the ZnO:Co (1%) sample.
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页码:27060 / 27072
页数:12
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