• Title of article

    Novel materials for high-efficiency III–V multi-junction solar cells

  • Author/Authors

    Masafumi Yamaguchi، نويسنده , , *، نويسنده , , Ken-Ichi Nishimura a، نويسنده , , Takuo Sasaki a، نويسنده , , Hidetoshi Suzuki، نويسنده , , Kouji Arafune a، نويسنده , , Nobuaki Kojima a، نويسنده , , Yoshio Ohsita a، نويسنده , , Yoshitaka Okada b، نويسنده , , Miho Yoshida and Akio Yamamoto ، نويسنده , , Tatsuya Takamoto b، نويسنده , , Kenji Araki e، نويسنده ,

  • Issue Information
    ماهنامه با شماره پیاپی سال 2008
  • Pages
    8
  • From page
    173
  • To page
    180
  • Abstract
    As a result of developing wide bandgap InGaP double hetero structure tunnel junction for sub-cell interconnection, InGaAs middle cell lattice-matched to Ge substrate, and InGaP-Ge heteroface structure bottom cell, we have demonstrated 38.9% efficiency at 489-suns AM1.5 with InGaP/InGaP/Ge 3-junction solar cells by in-house measurements. In addition, as a result of developing a non-imaging Fresnel lens as primary optics, a glass-rod kaleidoscope homogenizer as secondary optics and heat conductive concentrator solar cell modules, we have demonstrated 28.9% efficiency with 550-suns concentrator cell modules with an area of 5445 cm2. In order to realize 40% and 50% efficiency, new approaches for novel materials and structures are being studied. We have obtained the following results: (1) improvements of lattice-mismatched InGaP/InGaAs/Ge 3-junction solar cell property as a result of dislocation density reduction by using thermal cycle annealing, (2) high quality (In)GaAsN material for 4- and 5-junction applications by chemical beam epitaxy, (3) 11.27% efficiency InGaAsN single-junction cells, (4) 18.27% efficiency InGaAs/GaAs potentially modulated quantum well cells, and (5) 7.65% efficiency InAs quantum dot cells. 2007 Elsevier Ltd. All rights reserved.
  • Keywords
    solar cells , High efficiency , III–V compounds , Concentrator , New III–V-nitride materials , Quantum wells , quantum dots , Multi-junction
  • Journal title
    Solar Energy
  • Serial Year
    2008
  • Journal title
    Solar Energy
  • Record number

    939902