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On the Effect of Prevalent Carbazole Homocoupling Defects on the Photovoltaic Performance of PCDTBT:PC_71BM Solar Cells

机译:普遍存在的咔唑同性耦合缺陷对PCDTBT光伏性能的影响:PC_71BM太阳能电池

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摘要

The photophysical properties and solar cell performance of the classical donor-acceptor copolymer PCDTBT(poly(N-9-heptadecanyl-2,7-carbazole-alt -5,5-(4,7-di-2-thienyl-2,1,3-benzothiadiazole))) in relation to unintentionally formed main chain defects are investigated. Carbazole-carbazole homocouplings (Cbz hc) are found to significant extent in PCDTBT made with a variety of Suzuki polycondensation conditions. Cbz hc vary between 0 and 8 mol% depending on the synthetic protocol used, and are quantified by detailed nuclear magnetic resonance spectroscopy including model compounds, which allows to establish a calibration curve from optical spectroscopy. The results are corroborated by extended time-dependent density functional theory investigations on the structural, electronic, and optical properties of regularly alternating and homocoupled chains. The photovoltaic properties of PCDTBT:fullerene blend solar cells significantly depend on the Cbz hc content for constant molecular weight, whereby an increasing amount of Cbz hc leads to strongly decreased short circuit currents J(SC). With increasing Cbz hc content, J(SC) decreases more strongly than the intensity of the low energy absorption band, suggesting that small losses in absorption cannot explain the decrease in J(SC) alone, rather than combined effects of a more localized LUMO level on the TBT unit and lower hole mobilities found in highly defective samples. Homocoupling-free PCDTBT with optimized molecular weight yields the highest efficiency up to 7.2% without extensive optimization.
机译:经典供体共聚物PCDTBT的光物理性质和太阳能电池性能(聚(N-9-庚二烷基-2,7-咔唑-ATT -5,5-(4,7-DI-2-噻吩基-2,1)研究了3-苯并噻唑)))关于无意形成的主要链缺陷进行了研究。咔唑类咔唑同性全环(CBZ HC)在PCDTBT在具有各种铃木缩聚条件制成的PCDTBT方面存在显着程度。根据所用的合成方案,CBZ HC在0和8摩尔%之间变化,并且通过详细的核磁共振光谱量化,包括模型化合物,其允许从光学光谱法建立校准曲线。结果通过延长的时间依赖性密度泛函理论研究对定期交替和同性化链的结构,电子和光学性质进行延长的时间依赖性密度泛函。 PCDTBT的光伏性能:富勒烯共混太阳能电池显着取决于CBZ HC含量以恒定分子量,从而增加CBZ HC的增加量导致短路电流J(SC)的短路电流J(SC)。随着CBZ HC含量的增加,J(SC)比低能量吸收带的强度更强烈地降低,表明吸收的小损失不能解释单独的J(SC)的减少,而不是更局部的LUMO水平的组合效应在高度缺陷的样品中发现的TBT单元和较低孔散流性。无大量分子量的自由耦合PCDTBT可产生高达7.2%的最高效率,而无需广泛优化。

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  • 来源
    《Advanced energy materials》 |2016年第21期|1601232.1-1601232.9|共9页
  • 作者单位

    Univ Freiburg Makromol Chem Stefan Meier Str 31 D-79104 Freiburg Germany|Univ Cambridge Cavendish Lab Optoelect Grp JJ Thomson Ave Cambridge CB3 0HE England;

    Leibniz Inst Polymerforsch Dresden eV Hohe Str 6 D-01069 Dresden Germany;

    Max Planck Inst Kohlenforsch Kaiser Wilhelm Pl 1 D-45470 Mulheim Germany;

    Ist Italiano Tecnol Ctr Nano Sci & Technol PoliMi Via Pascoli 70-3 I-20133 Milan Italy|Politecn Milan Dipartimento Fis Pza L da Vinci 32 I-20133 Milan Italy;

    Univ Freiburg Makromol Chem Stefan Meier Str 31 D-79104 Freiburg Germany;

    Univ Freiburg Makromol Chem Stefan Meier Str 31 D-79104 Freiburg Germany;

    Univ Freiburg Makromol Chem Stefan Meier Str 31 D-79104 Freiburg Germany;

    Leibniz Inst Polymerforsch Dresden eV Hohe Str 6 D-01069 Dresden Germany;

    Chalmers Dept Chem & Chem Engn S-41296 Gothenburg Sweden;

    Chalmers Dept Chem & Chem Engn S-41296 Gothenburg Sweden;

    Max Planck Inst Kohlenforsch Kaiser Wilhelm Pl 1 D-45470 Mulheim Germany;

    Ist Italiano Tecnol Ctr Nano Sci & Technol PoliMi Via Pascoli 70-3 I-20133 Milan Italy;

    Univ Cambridge Cavendish Lab Optoelect Grp JJ Thomson Ave Cambridge CB3 0HE England;

    Univ Freiburg Makromol Chem Stefan Meier Str 31 D-79104 Freiburg Germany|Freiburger Mat Frochungszentrum D-79104 Freiburg Germany|Univ Freiburg Freiburger Inst Interakt Mat & Bioinspirierte Tec Georges Kohler Allee 105 D-79110 Freiburg Germany;

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

    conjugated polymers; homocoupling defects; PCDTBT; organice solar cells; Suzuki polycondensation;

    机译:共轭聚合物;同性耦合缺陷;PCDTBT;Organice太阳能电池;铃木缩聚;

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