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UV-Curable Polymer-QD Flexible Films as the Downconversion Layer for Improved Performance of Cu(In,Ga)Se_2 Solar Cells

机译:UV固化聚合物-QD柔性薄膜作为下变化层,用于改善Cu(In,Ga)Se_2太阳能电池的性能

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摘要

The downconversion process effectively traps high-energy photons of ultraviolet light and converts them into low-energy photons for utilization in solar cells. In this work, transparent, highly emissive, ultraviolet (UV)-curable nitrogen-functionalized graphene quantum dot-dispersed Norland Optical Adhesive (NOA) nanocomposite (herein denoted as poly-QD film) flexible films were applied as luminescent downconversion (LDC) layers to boost the efficiency of copper indium gallium selenide solar cells. The iN- graphene quantum dots (GQDs) were embedded into clear, colorless UV-curable NOA polymer matrices via the “click” reaction of thiol–ene components under UV light at room temperature. The best poly-QD film showed a high emission peak of 500 nm and improved external quantum efficiency in the high-energy solar spectrum, resulting in the highest efficiency of ∼9.70% (compared to 8.77% for bare cells), which triggered an ∼10.60% relative performance increment compared to bare copper indium gallium selenide (CIGS) solar cells. Hence, the overall CIGS solar cell performance enhancement caused mainly by iJ _(sc) improvement of ∼9.06% (relative enhancement) due to efficient trapping of short-wavelength photons. As-prepared poly-QD films were applied as LDC layers, which significantly boost quantum efficiency in short-wavelength spectra.
机译:下变化过程有效地捕获紫外光的高能量光子,并将它们转换成低能量光子以用于太阳能电池的利用。在这项工作中,透明,高发光,紫外线(UV)纯净的氮官能化石墨烯量子点分散的Norland光学粘合剂(NOA)纳米复合材料(本文表示为Poly-QD膜)柔性膜作为发光下变化(LDC)层施加提高铜铟镓硒化型太阳能电池的效率。通过在室温下通过UV光在UV光下的“点击”反应将 N-石墨烯量子点(GQDS)嵌入透明,无色的紫外线固化NOA聚合物基质中。最佳的多QD薄膜在高能量太阳光谱中显示出> 500nm的高排放峰值,提高了外部量子效率,从而最高效率~9.70%(相比裸电池的8.77%),这引发了一个与裸铜铟镓硒(CIGS)太阳能电池相比,相对性能增量〜10.60%。因此,由于高波长光子的有效捕获,整体CIGS太阳能电池性能增强主要由 J _(SC)改善〜9.06%(相对增强)引起的。制备的多QD膜被施加为LDC层,这在短波长光谱中显着提高了量子效率。

著录项

  • 来源
    《Energy & fuels》 |2020年第11期|14581-14590|共10页
  • 作者单位

    Division of Energy Technology Daegu Gyeongbuk Institute of Science & Technology (DGIST);

    Clean Energy Research Center Korea Institute of Science and Technology;

    School of Materials Science and Engineering Kyungpook National University;

    National Agenda Research Division Korea Institute of Science and Technology|Green School Korea University;

    Division of Energy Technology Daegu Gyeongbuk Institute of Science & Technology (DGIST);

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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