首页> 外文会议>2008 MRS spring meeting symposium proceedings >Study of Large Area a-Si:H and nc-Si:H Based Multijunction Solar Cells and Materials
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Study of Large Area a-Si:H and nc-Si:H Based Multijunction Solar Cells and Materials

机译:大面积a-Si:H和nc-Si:H基多结太阳能电池和材料的研究

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摘要

Solar cells based on hydrogenated nanocrystalline silicon (nc-Si:H) have demonstrated significant improvement in the last few years. From the standpoint of commercial viability, good quality nc-Si:H films must be deposited at a high rate. In this paper, we present the results of our investigations on obtaining high quality nc-Si:H and a-Si:H films and solar cells over large areas using high deposition rate. We have employed the modified very high frequency (MVHF) glow discharge technique to realize high-rate deposition. Modeling studies were conducted to attain good spatial uniformity of electric field over a large area (15"×15") MVHF cathode for nc-Si:H deposition. A comparative study has been carried out between the RF and MVHF plasma deposited a-Si:H and nc-Si:H single-junction and a-Si:Hc-Si:H double-junction solar cells. By optimizing the nc-Si:H cell and the tunnel/recombination junctions, we have obtained an initial aperture-area (460 cm~2) efficiency of 11.9% for a-Si:Hc-Si:H double-junction cells using conventional RF (13.56 MHz) plasma deposition. The deposition rate was 3 ?/s. Results on solar cells made with MVHF will also be presented.
机译:在过去的几年中,基于氢化纳米晶体硅(nc-Si:H)的太阳能电池已显示出显着的进步。从商业可行性的角度出发,必须以高速率沉积高质量的nc-Si:H薄膜。在本文中,我们介绍了使用高沉积速率在大面积上获得高质量nc-Si:H和a-Si:H薄膜和太阳能电池的研究结果。我们采用了改进的甚高频(MVHF)辉光放电技术来实现高速率沉积。进行了建模研究,以在用于nc-Si:H沉积的大面积(15“×15”)MVHF阴极上获得良好的电场空间均匀性。在RF和MVHF等离子体沉积的a-Si:H和nc-Si:H单结和a-Si:H / nc-Si:H双结太阳能电池之间进行了比较研究。通过优化nc-Si:H电池和隧道/复合结,我们获得了a-Si:H / nc-Si:H双结电池的初始开口面积(460 cm〜2)效率为11.9%使用常规RF(13.56 MHz)等离子体沉积。沉积速率为3Ω/ s。还将介绍用MVHF制造的太阳能电池的结果。

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

    United Solar Ovonic LLC, 1100 West Maple Road, Troy, MI, 48084;

    rnUnited Solar Ovonic LLC, 1100 West Maple Road, Troy, MI, 48084;

    rnUnited Solar Ovonic LLC, 1100 West Maple Road, Troy, MI, 48084;

    rnUnited Solar Ovonic LLC, 1100 West Maple Road, Troy, MI, 48084;

    rnUnited Solar Ovonic LLC, 1100 West Maple Road, Troy, MI, 48084;

    rnUnited Solar Ovonic LLC, 1100 West Maple Road, Troy, MI, 48084;

    rnUnited Solar Ovonic LLC, 1100 West Maple Road, Troy, MI, 48084;

    rnUnited Solar Ovonic LLC, 1100 West Maple Road, Troy, MI, 48084;

    rnUnited Solar Ovonic LLC, 1100 West Maple Road, Troy, MI, 48084;

    rnDepartment of Physics, University of Oregon, Eugene, OR, 97403;

    rnDepartment of Physics, University of Oregon, Eugene, OR, 97403;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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