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성장온도에 따른 Cu(In1Ga)Se2박막 태양전지의 광전특성 분석

Photovoltaic Properties of Cu(In1Ga)Se2Thin film Solar Cells Depending on Growth Temperature

  • 김석기 (한국에너지기술연구원 태양광발전연구팀) ;
  • 이정철 (한국에너지기술연구원 태양광발전연구팀) ;
  • 강기환 (한국에너지기술연구원 태양광발전연구팀) ;
  • 윤경훈 (한국에너지기술연구원 태양광발전연구팀) ;
  • 송진수 (한국에너지기술연구원 태양광발전연구팀) ;
  • 박이준 (한국에너지기술연구원 태양광발전연구팀) ;
  • 한상옥 (충남대학교 전기공학과)
  • 발행 : 2003.02.01

초록

This study puts focus on the optimization of growth temperature of CIGS absorber layer which affects severely the performance of solar cells. The CIGS absorber layers were prepared by three-stage co-evaporation of metal elements in the order of In-Ga-Se. The effect of the growth temperature of 1st stage was found not to be so important, and 350$^{\circ}C$ to be the lowest optimum temperature. In the case of growth temperature at 2nd/3rd stage, the optimum temperature was revealed to be 550$^{\circ}C$. The XRD results of CIGS films showed a strong (112) preferred orientation and the Raman spectra of CIGS films showed only the Al mode peak at 173cm$\^$-1/. Scanning electron microscopy results revealed very small grains at 2nd/3rd stage growth temperature of 480$^{\circ}C$. At higher temperatures, the grain size increased together with a reduction in the number of the voids. The optimization of experimental parameters above mentioned, through the repeated fabrication and characterization of unit layers and devices, led to the highest conversion efficiency of 15.4% from CIGS-based thin film solar cell with a structure of Al/ZnO/CdS/CIGS/Mo/glass.

키워드

참고문헌

  1. 한국전기전자재료학회지 v.11 no.9 CuInSe₂박막 태양전지 개발 현황 윤경훈
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  3. Proc. 1st World Conf. on Photovoltaic Energy Photovoltaic properties of Cu(In,Ga)Se₂thin film solar cell fabricated by coevaporation process M. Nishitani;T. Negami;M. Ikeda;N. Kohara;T. Terauchi;T. Wada;T. Hirao
  4. Proc. 2002 Summer Conf. Characterization of Cu(In,Ga)Se₂solar cells with Se evaporation conditions S. K. Kim;J. C. Lee;K. W. Kang;K. H. Yoon;J. Song;I. J. Park;S. O. Han
  5. Proc. 17th IEEE Photovoltaic Specialists Conf. CdS/CuInSe₂hetro junction cell research R. Noufi;R. Axton;D. Cahen;S. K. Deb
  6. Proc. 24th IEEE Photovoltaic Specialists Conf. Growth studies of CuInSe₂using Cu-Se flux M. Casteleyn
  7. Solar Energy materials and solar cells v.49 Prospects of wide gap chalcopyrites for thin film photovoltaic modules R. Herberholz;V. Nadenau;U. Ruhle;C. Koble;H. W. Schock;B. Dimmler https://doi.org/10.1016/S0927-0248(97)00199-2