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Perylene Sensitization of Fullerenes for Improved Performance in Organic Photovoltaics

机译:富勒烯的敏化以改善有机光伏性能

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摘要

We present the addition of an energy relay dye to fullerenes resulting in increased light harvesting and significantly improved power conversion efficiency for organic photovoltaic (OPV) devices. Although exhibiting excellent properties as electron acceptors, visible light absorption of fullerenes is limited. Strongly light absorbing donor materials are needed for efficient light harvesting in the thin active layer of OPV devices. Therefore, photocurrent generation and thus power conversion efficiency of this type of solar cell is confined by the overlap of the relatively narrow absorption band of commonly used donor molecules with the solar spectrum. Herein the concept of fullerene dye sensitization is presented, which allows increased light harvesting on the electron acceptor side of the heterojunction. The concept is exemplarily shown for an UV absorbing small molecule and a near infrared absorbing polymer, namely hexa-peri-hexabenzocoronene (HBC) and Poly[2,1,3-benzothiadiazole-4,7-diyl[4,4-bis(2-ethylhexyl)-4H-cyclopenta[2,1-b:3,4-b']dithiophene-2,6-diyl]] (PCPDTBT), respectively. In both systems remarkably higher power conversion efficiency is achieved via perylene sensitization of the fullerene acceptor. Steady state photoluminescence, transient absorption and transient photocurrent decay studies reveal pathways of the additionally generated excited states at the sensitizer molecule. The findings suggest fluorescence resonance energy transfer from the photo-excited dye to the fullerene enabling decoupling of light absorption and charge transport. The presented sensitization method is proposed as a viable new concept for performance enhancement in organic photovoltaic devices.
机译:我们目前向富勒烯中添加了一种能量中继染料,从而增加了光收集量,并显着提高了有机光伏(OPV)设备的功率转换效率。尽管表现出作为电子受体的优异性能,但是富勒烯的可见光吸收受到限制。为了在OPV器件的薄有源层中有效收集光,需要强吸收光的施主材料。因此,这种类型的太阳能电池的光电流产生以及因此的功率转换效率由常用供体分子的相对窄的吸收带与太阳光谱的重叠所限制。这里提出了富勒烯染料敏化的概念,其允许在异质结的电子受体侧上增加的光收集。示例性地显示了吸收紫外线的小分子和吸收近红外线的聚合物的概念,即六-peri-六苯并并戊二烯(HBC)和聚[2,1,3-苯并噻二唑-4,7-二基[4,4-bis( (2-乙基己基)-4H-环戊[2,1-b:3,4-b']二噻吩-2,6-二基]](PCPDTBT)。在这两个系统中,通过富勒烯受体的per敏化显着提高了功率转换效率。稳态光致发光,瞬态吸收和瞬态光电流衰减研究揭示了敏化剂分子上额外产生的激发态的途径。研究结果表明,荧光共振能量从光激发染料转移到富勒烯,使光吸收和电荷传输脱钩。提出的提出的敏化方法作为有机光伏器件性能增强的可行新概念。

著录项

  • 来源
    《Advanced energy materials》 |2011年第5期|1-9|共9页
  • 作者单位

    Dept. of Physics and Center for NanoScience (CeNS) Amalienstr. 54 80799 MÜnchen Germany;

    Dept. of Physics and Center for NanoScience (CeNS) Amalienstr. 54 80799 MÜnchen Germany;

    Dept. of Physics and Center for NanoScience (CeNS) Amalienstr. 54 80799 MÜnchen Germany;

    Max Planck Institute for Polymer Research Ackermannweg 10 55128 Mainz Germany;

    Max Planck Institute for Polymer Research Ackermannweg 10 55128 Mainz Germany;

    Dept. of Physics and Center for NanoScience (CeNS) Amalienstr. 54 80799 MÜnchen Germany;

    Intelligent Polymer Research Institute ARC Centre of Excellence for Electromaterials Science University of Wollongong Wollongong 2522 Australia;

    Dept. of Physics and Center for NanoScience (CeNS) Amalienstr. 54 80799 MÜnchen Germany;

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

    dye-sensitization; fullerenes; organic electronics; photovoltaic devices; solar cells;

    机译:染料敏化富勒烯有机电子光伏器件太阳能电池;

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