Monolithic crystalline silicon solar cells with SiNx layers doped with Tb3+ and Yb3+ rare-earth ions
来源期刊:JOURNAL OF RARE EARTHS2019年第5期
论文作者:Ing-Song Yu Shao-Chun Wu
文章页码:515 - 519
摘 要:In this study, we propose the fabrication of monolithic crystalline silicon solar cells with Tb3+ and Yb3+-doped silicon nitride(SiNx) layers by low-cost screen-printing methods. The performances of c-Si solar cells can be enhanced by rare-earth ions doped SiNx layers via the mechanism of spectrum conversion.These SiNx doped and codoped thin films were deposited by reactive magnetron co-sputtering and integrated as the antireflection coating layers in c-Si solar cells. The characterizations of SiNx, SiNx:Tb3+ tand SiNx:Tb3+-Yb3+ thin films were conducted by means of photoluminescence, Rutherford backscattering spectroscopy, Ellipsometry spectroscopy and Fourier transform infrared measurements. Their composition and refractive index was optimized to obtain good anti-reflection coating layer for c-Si solar cells.Transmission electron microscopy performs the uniform coatings on the textured emitter of c-Si solar cells. After the metallization process, we demonstrate monolithic c-Si solar cells with spectrum conversion layers, which lead to a relative increase by 1.34% in the conversion efficiency.
Ing-Song Yu1,Shao-Chun Wu1
1. Department of Materials Science and Engineering, National Dong Hwa University
摘 要:In this study, we propose the fabrication of monolithic crystalline silicon solar cells with Tb3+ and Yb3+-doped silicon nitride(SiNx) layers by low-cost screen-printing methods. The performances of c-Si solar cells can be enhanced by rare-earth ions doped SiNx layers via the mechanism of spectrum conversion.These SiNx doped and codoped thin films were deposited by reactive magnetron co-sputtering and integrated as the antireflection coating layers in c-Si solar cells. The characterizations of SiNx, SiNx:Tb3+ tand SiNx:Tb3+-Yb3+ thin films were conducted by means of photoluminescence, Rutherford backscattering spectroscopy, Ellipsometry spectroscopy and Fourier transform infrared measurements. Their composition and refractive index was optimized to obtain good anti-reflection coating layer for c-Si solar cells.Transmission electron microscopy performs the uniform coatings on the textured emitter of c-Si solar cells. After the metallization process, we demonstrate monolithic c-Si solar cells with spectrum conversion layers, which lead to a relative increase by 1.34% in the conversion efficiency.
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