• DocumentCode
    121495
  • Title

    Heterojunction rear passivated contact for high efficiency n-Cz Si solar cells

  • Author

    Lee, Byeong ; Nemeth, William ; Hao-Chih Yuan ; Page, Matthew R. ; LaSalvia, Vincenzo ; Young, David L. ; Stradins, Paul

  • Author_Institution
    Nat. Center for Photovoltaics, Nat. Renewable Energy Lab., Golden, CO, USA
  • fYear
    2014
  • fDate
    8-13 June 2014
  • Abstract
    We investigate the challenges and potential for high-efficiency n-type Cz Si solar cells having a hybrid structure - a diffused B emitter on the front side, and an amorphous Si heterojunction (SHJ) passivated full-area contact on the rear. This cell design has benefits over comparable high-efficiency geometries such as PERL (passivated emitter rear locally diffused) and SHJ cells with heterojunctions both front and rear. We show that an advantage of the HJ rear contact is excellent passivation of the backside, with measured contact recombination current density J0,b,c <; 10 fA/cm2; moreover, compared to PERL, its cell fabrication process is much simpler. Weighed against standard SHJ cells, the diffused front results in less optical loss and no need for a transparent conducting oxide (TCO). We study the contact resistivity of a state-of-the-art SHJ rear contact to the wafer, finding a value of ~0.3 ohm-cm2; a series of experiments are performed to reduce this value while maintaining potential for high Voc > 700 mV. As an initial demonstration of the concept, we fabricate a hybrid-structure cell having Voc = 671 mV, Jsc = 36.7 mA/cm2, FF = 0.75 and efficiency of 18.5%.
  • Keywords
    amorphous semiconductors; electrical contacts; electrical resistivity; elemental semiconductors; passivation; silicon; solar cells; HJ rear contact; PERL; SHJ cells; Si; TCO; amorphous silicon heterojunction; cell fabrication process; contact recombination current density measurement; contact resistivity; diffused emitter; heterojunction rear passivated contact; high-efficiency n-type Cz solar cells; hybrid-structure cell; passivated emitter rear locally diffused cells; transparent conducting oxide; Conductivity; Current density; Fabrication; Heterojunctions; Passivation; Photovoltaic cells; Silicon;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Photovoltaic Specialist Conference (PVSC), 2014 IEEE 40th
  • Conference_Location
    Denver, CO
  • Type

    conf

  • DOI
    10.1109/PVSC.2014.6924996
  • Filename
    6924996