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首页> 外文期刊>Advanced energy materials >Light Trapping with Dielectric Scatterers in Single- and Tandem-Junction Organic Solar Cells
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Light Trapping with Dielectric Scatterers in Single- and Tandem-Junction Organic Solar Cells

机译:单结和串联结有机太阳能电池中的介电散射体捕获光。

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摘要

Efficient dielectric scatterers based on a mixture of TiO_2 nanoparticles and polydimethylsiloxane are demonstrated for light trapping in semitransparent organic solar cells. An improvement of 80% in the photocurrent of an optimized semitransparent solar cell is achieved with the dielectric scatterer with ≈100% diffuse reflectance for wavelengths larger than 400 nm. For a parallel tandem solar cell, the dielectric scatterer generates 20% more photocurrent compared with a silver mirror beneath the cell; for a series tandem solar cell, the dielectric scatterer can be used as a photocurrent balancer between the subcells with different photoabsorbing materials. The power conversion efficiency of the tandem cell in series configuration with balanced photocurrent in the subcells exceeds that of an optimized standard solar cell with a reflective electrode. The characteristics of polydimethylsiloxane, such as flexibility and the ability to stick conformably to surfaces, also remain in the dielectric scatterers, which makes the demonstrated light trapping configuration highly suitable for large scale module manufacturing of roll-to-roll printed organic single- or tandem-junction solar cells.
机译:已证明基于TiO_2纳米粒子和聚二甲基硅氧烷的混合物的高效介电散射体可用于半透明有机太阳能电池中的光捕获。对于波长大于400 nm的介电散射体,其漫反射率约为100%,可以使优化的半透明太阳能电池的光电流提高80%。对于平行串联的太阳能电池,与电池下方的银镜相比,介电散射器产生的光电流多20%;对于串联的串联太阳能电池,介电散射体可用作具有不同光吸收材料的子电池之间的光电流平衡器。子电池中具有平衡光电流的串联配置串联电池的功率转换效率超过了带反射电极的优化标准太阳能电池的功率转换效率。介电散射体中还保留了聚二甲基硅氧烷的特性,例如柔韧性和顺应性地粘附在表面上,这使已证明的光捕获配置非常适合于卷对卷印刷有机单层或串联的大规模模块生产。结太阳能电池。

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  • 来源
    《Advanced energy materials 》 |2013年第12期| 1606-1613| 共8页
  • 作者单位

    Biomolecular and Organic Electronics IFM, and Center of Organic Electronics Linkoeping University SE-581 83 Linkoeping, Sweden;

    Biomolecular and Organic Electronics IFM, and Center of Organic Electronics Linkoeping University SE-581 83 Linkoeping, Sweden;

    Biomolecular and Organic Electronics IFM, and Center of Organic Electronics Linkoeping University SE-581 83 Linkoeping, Sweden;

    Biomolecular and Organic Electronics IFM, and Center of Organic Electronics Linkoeping University SE-581 83 Linkoeping, Sweden;

    Biomolecular and Organic Electronics IFM, and Center of Organic Electronics Linkoeping University SE-581 83 Linkoeping, Sweden;

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