The Single-Side Textured Crystalline Silicon Solar Cell Using Dielectric Coating Layer

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  • Do, Kyeom-Seon (Dept. of New Materials Engineering, Yonsei University) ;
  • Park, Seok-Gi (Dept. of Electrical Engineering, Konkuk University) ;
  • Myoung, Jae-Min (Dept. of New Materials Engineering, Yonsei University) ;
  • Yu, Gwon-Jong (Photovoltaic Research Center, Korea Institute of energy Research) ;
  • Song, Hee-Eun (Photovoltaic Research Center, Korea Institute of energy Research)
  • 도겸선 (연세대학교 대학원 신소재공학과) ;
  • 박석기 (건국대학교 대학원 전기공학과) ;
  • 명재민 (연세대학교 대학원 신소재공학과) ;
  • 유권종 (한국에너지기술연구원) ;
  • 송희은 (한국에너지기술연구원)
  • Published : 2011.11.24

Abstract

Many researches have been carried out to improve light absorption in the crystalline silicon solar cell fabrication. The rear reflection is applied to increase the path length of light, resulting in the light absorption enhancement and thus the efficiency improvement mainly due to increase in short circuit current. In this paper, we manufactured the silicon solar cell using the mono crystalline silicon wafers with $156{\times}156mm^2$, 0.5~3.0 ${\Omega}{\cdot}cm$ of resistivity and p-type. After saw damage removal, the dielectric film ($SiN_x$)on the back surface was deposited, followed by surface texturing in the KOH solution. It resulted in single-side texturing wafer. Then the dielectric film was removed in the HF solution. The silicon wafers were doped with phosphorus by $POCl_3$ with the sheet resistance 50 ${\Omega}/{\Box}$ and then the silicon nitride was deposited on the front surface by the PECVD with 80nm thickness. The electrodes were formed by screen-printing with Ag and Al paste for front and back surface, respectively. The reflectance and transmittance for the single-sided and double-sided textured wafers were compared. The double-sided textured wafer showed higher reflectance and lower transmittance at the long wavelength region, compared to single-sided. The completed crystalline silicon solar cells with different back surface texture showed the conversion efficiency of 17.4% for the single sided and 17.3% for the double sided. The efficiency improvement with single-sided textured solar cell resulted from reflectance increase on back surface and light absorption enhancement.

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