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首页> 外文期刊>Journal of materials science >Light-induced degradation of a push-pull copolymer for ITO-free organic solar cell application
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Light-induced degradation of a push-pull copolymer for ITO-free organic solar cell application

机译:用于ITO的有机太阳能电池应用的推挽共聚物的光致抗降解

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摘要

A push-pull copolymer-P1 was successfully designed and synthesized by coupling ter-thiophene donor (D) and isoindigo acceptor (A) units by a direct arylation polycondensation method. The optical bandgap of the copolymer was 1.51 eV. The copolymer showed a weak intramolecular charge transfer due to steric hindrance between the D and A units. An ITO-free organic solar cell was fabricated based on P1 donor and PC_(71)BM acceptor. An almost complete bleaching of absorption in less than 50 h of light exposure was found in pristine P1 film. This fast light-induced degradation is due to chain scissioning and intramolecular bond breaking within the single copolymer unit. This degradation is suppressed with the addition of PC_(71)BM. However, the addition of a 3% v/v 1,8-diiodooctane solvent additive in the processing solvent reduces the life time of the P1:PC_(71)BM-based active layer that the remaining absorbance decreases from 30 to 10% after 80 h of light exposure.
机译:通过通过直接芳基化缩聚法通过偶联三噻吩供体(D)和Isoindigo受体(A)单元成功设计和合成推挽共聚物-P1。共聚物的光学带隙为1.51eV。由于D和单位之间的空间障碍,共聚物显示出弱分子内电荷转移。基于P1供体和PC_(71)BM受体来制造无ITO的有机太阳能电池。在原始P1薄膜中发现了几乎完全漂白的吸收在不到50小时的曝光中。这种快速的光引起的降解是由于单一共聚物单元内的链裂解和分子内粘合。通过添加PC_(71)BM,抑制了这种劣化。然而,在处理溶剂中加入3%v / v 1,8-二碘辛烷溶剂添加剂减少了P1:PC_(71)基于BM的活性层的寿命,即剩余吸光度在30%至10%之后降低80小时的曝光。

著录项

  • 来源
    《Journal of materials science》 |2020年第23期|21303-21315|共13页
  • 作者单位

    Department of Physics Addis Ababa University Addis Ababa Ethiopia;

    Department of Physics Debre Berhan University Debre Berhan Ethiopia;

    Department of Chemistry Addis Ababa University Addis Ababa Ethiopia;

    Department of Chemistry Addis Ababa University Addis Ababa Ethiopia;

    Future Industries Institute University of South Australia Mawson Lakes South Australia 5095 Australia;

    Department of Physics Addis Ababa University Addis Ababa Ethiopia;

    Department of Materials Science and Engineering Adama Science and Technology University Adama Ethiopia;

    Physics Department Laser Research Institute Stellenbosch University Stellenbosch 7602 South Africa;

    Physics Department Laser Research Institute Stellenbosch University Stellenbosch 7602 South Africa;

  • 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
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