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
  • [31] Low-Intensity and Low-Temperature Effects on the Upright Metamorphic Four-Junction Solar Cells
    Zhou, Jiaming
    Zhao, Kelun
    Zhang, Yanqing
    Liu, Chaoming
    Li, Xinyi
    Sun, Lijie
    Zheng, Hongquan
    Qi, Chunhua
    Ma, Guoliang
    Wang, Tianqi
    Huo, Mingxue
    PHYSICA STATUS SOLIDI-RAPID RESEARCH LETTERS, 2024, 18 (12):
  • [32] Six-Junction Concentrator Solar Cells
    Geisz, John F.
    Steiner, Myles A.
    Schulte, Kevin L.
    Young, Matthew
    France, Ryan M.
    Friedman, Daniel J.
    14TH INTERNATIONAL CONFERENCE ON CONCENTRATOR PHOTOVOLTAIC SYSTEMS (CPV-14), 2018, 2012
  • [33] Adhesive bonding for mechanically stacked solar cells
    Mathews, Ian
    O'Mahony, Donagh
    Thomas, Kevin
    Pelucchi, Emanuele
    Corbett, Brian
    Morrison, Alan P.
    PROGRESS IN PHOTOVOLTAICS, 2015, 23 (09): : 1080 - 1090
  • [34] Recent Progress and Spectral Robustness Study for Mechanically Stacked Multi-junction Solar Cells
    Zhao, Lu
    Flamand, Giovanni
    Poortmans, Jef
    6TH INTERNATIONAL CONFERENCE ON CONCENTRATING PHOTOVOLTAIC SYSTEMS (CPV-6), 2010, 1277 : 284 - 289
  • [35] Radiation hard four-junction space solar cell based on GaInAsP alloys
    Lackner, David
    Schoen, Jonas
    Lang, Robin
    Godejohann, Birte-Julia
    Predan, Felix
    Schachtner, Michael
    Boizot, Bruno
    Lefevre, Jeremie
    Floetgen, Christoph
    Schwar, Joerg
    Dimroth, Frank
    2019 EUROPEAN SPACE POWER CONFERENCE (ESPC), 2019,
  • [36] Effects of neutron radiation on the key component cells of upright metamorphic four-junction (UMM4J) solar cells
    Zhou, Jiaming
    Zhang, Yanqing
    Liu, Chaoming
    Li, Heyi
    Qi, Chunhua
    Wang, Tianqi
    Ma, Guoliang
    Xiao, Liyi
    Huo, Mingxue
    OPTICAL MATERIALS, 2023, 146
  • [37] Investigation of radiation-induced degradations in four-junction solar cell by experiment and simulation
    Peng, Chao
    Ding, Fei
    Lei, Zhifeng
    Zhang, Zhangang
    En, Yunfei
    Huang, Yun
    MICROELECTRONICS RELIABILITY, 2020, 108
  • [38] Loss Analysis for Single Junction Concentrator Solar Cells
    Ekins-Daukes, Nicholas J.
    Soeriyadi, Anastasia
    Zhao, Wenqi
    Bremner, Stephen
    Pusch, Andreas
    14TH INTERNATIONAL CONFERENCE ON CONCENTRATOR PHOTOVOLTAIC SYSTEMS (CPV-14), 2018, 2012
  • [39] Impact of nanometer air gaps on photon recycling in mechanically stacked multi-junction solar cells
    Tayagaki, Takeshi
    Makita, Kikuo
    Oshima, Ryuji
    Mizuno, Hidenori
    Sugaya, Takeyoshi
    OPTICS EXPRESS, 2019, 27 (04) : A1 - A10
  • [40] 2D Modeling of InGaP/GaAs/InGaAs Four-Junction Solar Cell
    Xiao, Y. G.
    Sheng, Y.
    Li, Z. Q.
    Li, Z. M. Simon
    2019 19TH INTERNATIONAL CONFERENCE ON NUMERICAL SIMULATION OF OPTOELECTRONIC DEVICES (NUSOD 2019), 2019, : 97 - 98