Mechanically stacked four-junction concentrator solar cells

被引:0
|
作者
Steiner, Myles A. [1 ]
Geisz, John F. [1 ]
Ward, J. Scott [1 ]
Garcia, Ivan [1 ,2 ]
Friedman, Daniel J. [1 ]
King, Richard R. [3 ]
Chiu, Philip T. [3 ]
France, Ryan M. [1 ]
Duda, Anna [1 ]
Olavarria, Waldo J. [1 ]
Young, Michelle [1 ]
Kurtz, Sarah R. [1 ]
机构
[1] Natl Renewable Energy Lab, Golden, CO 80401 USA
[2] Univ Politecn Madrid, Inst Energia Solar, E-28040 Madrid, Spain
[3] Boeing Spectrolab, Sylmar, CA 91342 USA
关键词
III-V solar cell; Mechanical stack; Multijunction solar cell; Photon recycling;
D O I
暂无
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Multijunction solar cells can be fabricated by bonding together component cells that are grown separately. Because the component cells are each grown lattice-matched to suitable substrates, this technique allows alloys of different lattice constants to be combined without the structural defects introduced when using metamorphic buffers. Here we present results on the fabrication and performance of four-junction mechanical stacks composed of GaInP/GaAs and GaInAsP/GaInAs tandems, grown on GaAs and InP substrates, respectively. The two tandems were bonded together with a low-index, transparent epoxy that acts as an omni-directional reflector to the GaAs bandedge luminescence, while simultaneously transmitting nearly all of the sub-bandgap light. As determined by electroluminescence measurements and optical modeling, the GaAs subcell demonstrates a higher internal radiative limit and thus higher subcell voltage, compared with GaAs subcells without enhanced internal optics; all four subcells exhibit excellent material quality. The device was fabricated with four contact terminals so that each tandem can be operated at its maximum power point, which raises the cumulative efficiency and decreases spectral sensitivity. Efficiencies exceeding 38% at one-sun have been demonstrated. Eliminating the series resistance is the key challenge for the concentrator cells. We will discuss the performance of one-sun and concentrator versions of the device, and compare the results to recently fabricated monolithic four-junction cells.
引用
收藏
页数:3
相关论文
共 50 条
  • [21] Germanium Solar Cells Grown by Molecular Beam Epitaxy for Lattice-matched, Four-junction Solar Cells
    Masuda, Taizo
    Faucher, Joseph
    Lee, Minjoo Larry
    2015 IEEE 42ND PHOTOVOLTAIC SPECIALIST CONFERENCE (PVSC), 2015,
  • [22] EMCORE Four-junction Inverted Metamorphic Solar Cell Development
    Miller, Nate
    Patel, Pravin
    Struempel, Claudia
    Kerestes, Chris
    Aiken, Dan
    Sharps, Paul
    10TH INTERNATIONAL CONFERENCE ON CONCENTRATOR PHOTOVOLTAIC SYSTEMS (CPV-10), 2014, 1616 : 50 - 53
  • [23] Four-junction superconducting circuit
    Qiu, Yueyin
    Xiong, Wei
    He, Xiao-Ling
    Li, Tie-Fu
    You, J. Q.
    SCIENTIFIC REPORTS, 2016, 6
  • [24] Four-junction superconducting circuit
    Yueyin Qiu
    Wei Xiong
    Xiao-Ling He
    Tie-Fu Li
    J. Q. You
    Scientific Reports, 6
  • [25] InP-Based Composite Substrates For Four Junction Concentrator Solar Cells
    Tauzin, Aurelie
    Lagoutte, Emmanuelle
    Salvetat, Thierry
    Guelfucci, Jude
    Bogumilowicz, Yann
    Imbert, Bruno
    Fournel, Frank
    Reboh, Shay
    Luce, Flavia Piegas
    Lecouvey, Christophe
    Chaira, Tarik
    Carron, Veronique
    Moriceau, Hubert
    Duvernay, Julien
    Signamarcheix, Thomas
    Drazek, Charlotte
    Charles-Alfred, Cedric
    Ghyselen, Bruno
    Guiot, Eric
    Tibbits, Thomas
    Beutel, Paul
    Dimroth, Frank
    11TH INTERNATIONAL CONFERENCE ON CONCENTRATOR PHOTOVOLTAIC SYSTEMS (CPV-11), 2015, 1679
  • [26] Improved efficiency of a four-junction solar cell under real sunlight
    Teramoto, Hideo
    Ajima, Yoshiaki
    Kaneko, Yamato
    Nakamura, Yuki
    Jomen, Ryota
    Dai, Pan
    Lu, Shulong
    Uchida, Shiro
    JAPANESE JOURNAL OF APPLIED PHYSICS, 2018, 57 (08)
  • [27] InGaP/GaAs and InGaAs mechanically-stacked triple-junction solar cells
    Takamoto, T
    Ikeda, E
    Agui, T
    Kurita, H
    Tanabe, T
    Tanaka, S
    Matsubara, H
    Mine, Y
    Takagishi, S
    Yamaguchi, M
    CONFERENCE RECORD OF THE TWENTY SIXTH IEEE PHOTOVOLTAIC SPECIALISTS CONFERENCE - 1997, 1997, : 1031 - 1034
  • [28] OPTICS AND CALCULATED EFFICIENCIES OF MECHANICALLY STACKED 2-JUNCTION SOLAR-CELLS
    PARTAIN, LD
    FRAAS, LM
    MCLEOD, PS
    CAPE, JA
    KURYLA, MS
    JOURNAL OF APPLIED PHYSICS, 1987, 62 (02) : 694 - 699
  • [29] Subcells Analysis of Thin-Film Four-Junction Solar Cells Using Optoelectronic Reciprocity Relation
    Long, Junhua
    Sun, Qiangjian
    Li, Xuefei
    Dai, Pan
    Song, Minghui
    Zhu, Lin
    Akiyama, Hidefumi
    Lu, Jianya
    Lu, Shulong
    SOLAR RRL, 2021, 5 (03)
  • [30] Fabrication of highly efficient four-junction solar cells by surface-activated wafer-bonding
    Predan, F.
    Heckelmann, S.
    Niemeyer, M.
    Lackner, D.
    Kovacs, A.
    Dunin-Borkowski, R. E.
    Jaeger, W.
    Dimroth, F.
    2017 5TH INTERNATIONAL WORKSHOP ON LOW TEMPERATURE BONDING FOR 3D INTEGRATION (LTB-3D), 2017, : 37 - 37