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표면텍스처링된 이중구조 Ag/Al:Si 후면반사막의 광산란 특성

Light Scattering Properties of Highly Textured Ag/Al:Si Bilayer Back Reflectors

  • 장은석 (한국에너지기술연구원 태양광연구단) ;
  • 백상훈 (한국에너지기술연구원 태양광연구단) ;
  • 장병열 (한국에너지기술연구원 태양광연구단) ;
  • 박상현 (한국에너지기술연구원 태양광연구단) ;
  • 윤경훈 (한국에너지기술연구원 태양광연구단) ;
  • 이영우 (충남대학교, 녹색에너지기술전문대학원) ;
  • 조준식 (한국에너지기술연구원 태양광연구단)
  • Jang, Eun-Seok (Photovoltaic Center, Korea Institute of Energy Research) ;
  • Baek, Sang-Hun (Photovoltaic Center, Korea Institute of Energy Research) ;
  • Jang, Byung-Yeol (Photovoltaic Center, Korea Institute of Energy Research) ;
  • Park, Sang-Hyun (Photovoltaic Center, Korea Institute of Energy Research) ;
  • Yoon, Kyung-Hoon (Photovoltaic Center, Korea Institute of Energy Research) ;
  • Rhee, Young-Woo (Graduate School of Green Energy Technology, Chungnam National University) ;
  • Cho, Jun-Sik (Photovoltaic Center, Korea Institute of Energy Research)
  • 투고 : 2011.09.02
  • 심사 : 2011.10.06
  • 발행 : 2011.10.27

초록

Highly textured Ag, Al and Al:Si back reflectors for flexible n-i-p silicon thin-film solar cells were prepared on 100-${\mu}m$-thick stainless steel substrates by DC magnetron sputtering and the influence of their surface textures on the light-scattering properties were investigated. The surface texture of the metal back reflectors was influenced by the increased grain size and by the bimodal distribution that arose due to the abnormal grain growth at elevated deposition temperatures. This can be explained by the structure zone model (SZM). With an increase in the deposition temperatures from room temperature to $500^{\circ}C$, the surface roughness of the Al:Si films increased from 11 nm to 95 nm, whereas that of the pure Ag films increased from 6 nm to 47 nm at the same deposition temperature. Although Al:Si back reflectors with larger surface feature dimensions than pure Ag can be fabricated at lower deposition temperatures due to the lower melting point and the Si impurity drag effect, they show poor total and diffuse reflectance, resulting from the low reflectivity and reflection loss on the textured surface. For a further improvement of the light-trapping efficiency in solar cells, a new type of back reflector consisting of Ag/Al:Si bilayer is suggested. The surface morphology and reflectance of this reflector are closely dependent on the Al:Si bottom layer and the Ag top layer. The relationship between the surface topography and the light-scattering properties of the bilayer back reflectors is also reported in this paper.

키워드

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