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Amorphous Silicon Single-Junction Thin-Film Solar Cell Exceeding 10% Efficiency by Design Optimization.

Authors :
Kabir, Mohammed Ikbal
Shahahmadi, Seyed A.
Lim, Victor
Zaidi, Saleem
Sopian, Kamaruzzaman
Amin, Nowshad
Source :
International Journal of Photoenergy. 2012, Special section p1-7. 7p.
Publication Year :
2012

Abstract

The conversion efficiency of a solar cell can substantially be increased by improved material properties and associated designs. At first, this study has adopted AMPS-1D (analysis of microelectronic and photonic structures) simulation technique to design and optimize the cell parameters prior to fabrication, where the optimum design parameters can be validated. Solar cells of single junction based on hydrogenated amorphous silicon (a-Si:H) have been analyzed by using AMPS- 1D simulator. The investigation has been made based on important model parameters such as thickness, doping concentrations, bandgap, and operating temperature and so forth. The efficiency of single junction a-Si:H can be achieved as high as over 19% after parametric optimization in the simulation, which might seem unrealistic with presently available technologies. Therefore, the numerically designed and optimized a-SiC:H/a-SiC:H-buffer/a-Si:H/a-Si:H solar cells have been fabricated by using PECVD (plasma-enhanced chemical vapor deposition), where the best initial conversion efficiency of 10.02% has been achieved (Voc = 0.88V,Jsc = 15.57 mA/cm² and FF = 0.73) for a small area cell (0.086 cm²). The quantum efficiency (QE) characteristic shows the cell's better spectral response in the wavelength range of 400 nm-650 nm, which proves it to be a potential candidate as the middle cell in a-Si-based multijunction structures. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1110662X
Database :
Academic Search Index
Journal :
International Journal of Photoenergy
Publication Type :
Academic Journal
Accession number :
84954569
Full Text :
https://doi.org/10.1155/2012/460919