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首页> 外文期刊>Journal of Applied Physics >Barium hydroxide hole blocking layer for front- and back-organic/crystalline Si heterojunction solar cells
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Barium hydroxide hole blocking layer for front- and back-organic/crystalline Si heterojunction solar cells

机译:用于正面和背面有机/晶体Si异质结太阳能电池的氢氧化钡空穴阻挡层

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摘要

We demonstrate the potential of barium hydroxide, Ba(OH)_2, as a hole blocking layer on the photovoltaic performance of front- and back-organic-type crystalline silicon (n-Si) heterojunction solar cells with poly(3,4-ethylenedioxythiophene):poly(styrene sulfonate)(PEDOT:PSS). The power conversion efficiency (PCE) of the front-PEDOT:PSS-Si heterojunction solar cell was increased from 12.8% for pristine to 13.6% with a 2-nm-thick Ba(OH)_2 interlayer at the rear n-Si and aluminum (Al) cathode interface due to the enhanced hole blocking as well as electron injection capability to the Al cathode in the infrared region. PCE was further increased to 14.3% with a short-circuit density J_(SC) of 30.27 mA/cm2, an open-circuit voltage V_(OC) of 0.632 V, and a fill factor FF of 0.75 using a 20-nm-thick 4,4'-Cyclohexylidenebis[N,N-bis(4-methylphenyl)benzenamine] as an antireflection layer. PCE of the back-PEDOT:PSS-Si heterojunction solar cells was also increased from 4.4% for pristine to 8.1 % with a J_(SC) of 33.40 mA/cm~2, a V_)(OC) of 0.573 V, and an FF of 0.423 by inserting a 2-nm-thick Ba(OH)_2 layer at the front-Al and isotropically textured n-Si interface. These findings imply that Ba(OH)_2 has great potential as an efficient hole-blocking layer for both front- and back-PEDOT:PSS-Si heterojunction solar cells.
机译:我们展示了氢氧化钡Ba(OH)_2作为空穴阻挡层对具有聚(3,4)的正面和背面有机/ n型晶体硅(n-Si)异质结太阳能电池的光伏性能的潜力-乙撑二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)。前PEDOT:PSS / n-Si异质结太阳能电池的功率转换效率(PCE)从原始的12.8%提高到13.n%,在后n-Si处具有2nm厚的Ba(OH)_2中间层铝和铝的阴极界面,这是由于增强了空穴阻挡以及在红外区域向铝阴极的电子注入能力。 PCE进一步提高到14.3%,短路密度J_(SC)为30.27 mA / cm2,开路电压V_(OC)为0.632 V,填充系数FF为20-nm(厚) 4,4'-环己叉基双[N,N-双(4-甲基苯基)苯甲胺]作为增透层。背面PEDOT:PSS / n-Si异质结太阳能电池的PCE也从原始的4.4%增加到8.1%,J_(SC)为33.40 mA / cm〜2,V _)(OC)为0.573 V,通过在前Al和各向同性织构的n-Si界面处插入2 nm厚的Ba(OH)_2层,使FF为0.423。这些发现表明,Ba(OH)_2作为前和后PEDOT:PSS / n-Si异质结太阳能电池的有效空穴阻挡层具有巨大的潜力。

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  • 来源
    《Journal of Applied Physics 》 |2017年第5期| 055101.1-055101.8| 共8页
  • 作者单位

    Graduate School of Science and Engineering, Saitama University, Sakura, Saitama 338-8570, Japan;

    Graduate School of Science and Engineering, Saitama University, Sakura, Saitama 338-8570, Japan;

    Graduate School of Science and Engineering, Saitama University, Sakura, Saitama 338-8570, Japan;

    Graduate School of Science and Engineering, Saitama University, Sakura, Saitama 338-8570, Japan;

    Graduate School of Science and Engineering, Saitama University, Sakura, Saitama 338-8570, Japan;

    Graduate School of Science and Engineering, Saitama University, Sakura, Saitama 338-8570, Japan;

    Bio-Nano Electronics Research Centre, Toyo University, Kawagoe, Saitama 350-8585, Japan;

    Bio-Nano Electronics Research Centre, Toyo University, Kawagoe, Saitama 350-8585, Japan;

    Bio-Nano Electronics Research Centre, Toyo University, Kawagoe, Saitama 350-8585, Japan;

    Bio-Nano Electronics Research Centre, Toyo University, Kawagoe, Saitama 350-8585, Japan;

    Graduate School of Science and Engineering, Saitama University, Sakura, Saitama 338-8570, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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