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High Voltage Quantum Well Waveguide Solar Cells

机译:高压量子阱波导太阳能电池

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摘要

Photon absorption, and thus current generation, is hindered in conventional thin-film solar cell designs, including quantum well structures, by the limited path length of incident light passing vertically through the device structure. Optical scattering into lateral waveguide structures provides a physical mechanism to dramatically increase photocurrent generation through in-plane light trapping. However, the insertion of wells of high refractive index material with lower energy gap into the device structure often results in lower voltage operation, and hence lower photovoltaic power conversion efficiency. In this work, we demonstrate that the voltage output of an InGaAs quantum well waveguide photovoltaic device can be increased by employing a novel Ⅲ-Ⅴ material structure with an extended wide band gap emitter heterojunction. Analysis of the light Ⅳ characteristics from small area test devices reveals that non-radiative recombination components of the underlying dark diode current have been reduced, exposing the limiting radiative recombination component and providing a pathway for realizing solar-electric conversion efficiency of 30% or more in single-junction cells.
机译:在包括量子阱结构的常规薄膜太阳能电池设计中,由于垂直穿过器件结构的入射光的路径长度有限,从而阻碍了光子吸收以及由此产生的电流。进入侧向波导结构的光散射提供了一种物理机制,可通过平面内光捕获极大地增加光电流的产生。然而,将具有较低能隙的高折射率材料的阱插入器件结构中常常导致较低的电压操作,并因此导致较低的光伏功率转换效率。在这项工作中,我们证明了采用具有扩展的宽带隙发射极异质结的新型Ⅲ-Ⅴ材料结构可以提高InGaAs量子阱波导光伏器件的电压输出。对来自小面积测试设备的光Ⅳ特性的分析表明,潜在的暗二极管电流的非辐射复合成分已减少,从而暴露了限制性的辐射复合成分,并为实现30%或更高的太阳能转换效率提供了途径在单结细胞中。

著录项

  • 来源
  • 会议地点 San Diego CA(US)
  • 作者单位

    Magnolia Solar, Inc. 54 Cummings Park, Suite 316, Woburn, MA 01801 251 Fuller Road, CESTM-B250, Albany, NY 12203;

    Magnolia Solar, Inc. 54 Cummings Park, Suite 316, Woburn, MA 01801 251 Fuller Road, CESTM-B250, Albany, NY 12203;

    Magnolia Solar, Inc. 54 Cummings Park, Suite 316, Woburn, MA 01801 251 Fuller Road, CESTM-B250, Albany, NY 12203;

    Kopin Corporation 200 John Hancock Road, Taunton, MA 02780;

    Kopin Corporation 200 John Hancock Road, Taunton, MA 02780;

    Kopin Corporation 200 John Hancock Road, Taunton, MA 02780;

    Kopin Corporation 200 John Hancock Road, Taunton, MA 02780;

    Rensselaer Polytechnic Institute (RPI) 110 Eighth Street, Troy, NY 12180;

    Rensselaer Polytechnic Institute (RPI) 110 Eighth Street, Troy, NY 12180;

    Rensselaer Polytechnic Institute (RPI) 110 Eighth Street, Troy, NY 12180;

    Rensselaer Polytechnic Institute (RPI) 110 Eighth Street, Troy, NY 12180;

    College of Nanoscale Science and Engineering (CNSE) 257 Fuller Road, Albany, NY 12203;

    New York State Energy Research and Development Authority (NYSERDA) 17 Columbia Circle, Albany, NY 12203;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光电池;
  • 关键词

  • 入库时间 2022-08-26 13:44:30

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