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Insights into the role of the interface defects density and the bandgap of the back surface field for efficient p-type silicon heterojunction solar cells
Wang, F. Y.; Y. B. Gao; Z. Y. Pang; L. L. Yang and J. H. Yang
2017
发表期刊Rsc Advances
卷号7期号:43
摘要An n-type silicon wafer appears to be an excellent base material for high efficiency silicon heterojunction solar cells with high annual energy output. The further development of viable p-wafer cells would open many industrial photovoltaic options. Here, the role of the interface defects density and the bandgap of the back surface field of p-type silicon heterojunction solar cells have been investigated in detail to provide guidelines for achieving high performance. The result indicates that the output characteristics of the heterojunction solar cells are sensitive to the density of interface defects (D-it) at both sides of the cSi surface. However, the output parameters primarily affected by Dit at the front and rear side are not identical. Back surface field (BSF), which aims to reduce photo-generated carriers' recombination at the rear interface, has also been optimized by adjusting the bandgap to improve the collection efficiency. Finally, based on experimental results, we propose that the conversion efficiency of p-type silicon heterojunction solar cells could be increased beyond 23% by efficiently regulating the bifacial D-it and the bandgap of the BSF layer.
收录类别sci ; ei
语种英语
文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/59248
专题中科院长春光机所知识产出
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Wang, F. Y.,Y. B. Gao,Z. Y. Pang,et al. Insights into the role of the interface defects density and the bandgap of the back surface field for efficient p-type silicon heterojunction solar cells[J]. Rsc Advances,2017,7(43).
APA Wang, F. Y.,Y. B. Gao,Z. Y. Pang,&L. L. Yang and J. H. Yang.(2017).Insights into the role of the interface defects density and the bandgap of the back surface field for efficient p-type silicon heterojunction solar cells.Rsc Advances,7(43).
MLA Wang, F. Y.,et al."Insights into the role of the interface defects density and the bandgap of the back surface field for efficient p-type silicon heterojunction solar cells".Rsc Advances 7.43(2017).
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