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首页> 外文期刊>Advanced energy materials >Correlating Structure and Morphology to Device Performance of Molecular Organic Donor-Acceptor Photovoltaic Cells Based on Diindenoperylene (DIP) and C_(60)
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Correlating Structure and Morphology to Device Performance of Molecular Organic Donor-Acceptor Photovoltaic Cells Based on Diindenoperylene (DIP) and C_(60)

机译:基于双茚并戊二烯(DIP)和C_(60)的分子有机供体-受体光伏电池的结构和形态与器件性能的相关性

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摘要

The performance of organic photovoltaic cells (OPVCs) shows a critical dependence on morphology and structure of the active layers. In small molecule donor/acceptor (D/A) cells fabrication parameters, like substrate temperature and evaporation rate, play a significant role for crystallization and roughening of the film. In particular, the fraction of mixed material at the interface between donor and acceptor is highly relevant for device performance. While an ideal planar heterojunction (PHJ) exhibits the smallest possible interface area resulting in suppressed recombination losses, mixed layers suffer strongly from recombination but show higher exciton dissociation efficiencies. In this study we investigate PHJ and planar-mixed heterojunction (PM-HJ) solar cells based on diindenoperylene (DIP) as donor and C_(60) as acceptor, fabricated under different growth conditions. Crazing incidence small angle X-ray scattering (GISAXS), X-ray reflectometry (XRR) and atomic force microscopy (AFM) are used to obtain detailed information about in- and out-of-plane structures and topography. In that way we find that surface and bulk domain distances are correlated in size for PHJs, while PM-HJs show no correlation at all. The resulting solar cell characteristics are strongly affected by the morphology, as reorganizations in structure correlate with changes in the solar cell performance.
机译:有机光伏电池(OPVC)的性能显示出对活性层的形态和结构的关键依赖性。在小分子供体/受体(D / A)细胞中,制造参数(如底物温度和蒸发速率)对薄膜的结晶和粗糙化起着重要作用。特别地,在施主和受主之间的界面处的混合材料的比例与器件性能高度相关。理想的平面异质结(PHJ)表现出尽可能小的界面面积,从而抑制了重组损失,而混合层受重组的影响很大,但显示出更高的激子离解效率。在这项研究中,我们研究了在不同生长条件下制造的基于二茚并oper烯(DIP)作为供体和C_(60)作为受体的PHJ和平面混合异质结(PM-HJ)太阳能电池。裂纹入射小角X射线散射(GISAXS),X射线反射法(XRR)和原子力显微镜(AFM)用于获得有关平面内和平面外结构以及形貌的详细信息。这样,我们发现PHJ的表面和主体区域距离在大小上相关,而PM-HJ则完全没有相关性。由于结构的重组与太阳能电池性能的变化相关,因此所得的太阳能电池特性会受到形态的强烈影响。

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  • 来源
    《Advanced energy materials》 |2013年第8期|1075-1083|共9页
  • 作者单位

    Institut fuer Physik Universitaet Augsburg Universitaetsstr.1, 86135 Augsburg, Germany;

    Physik-Department Lehrstuhl fuer funktionelle Materialien Technische Universitaet Muenchen James-Frank-Str.1, 85748 Garching, Germany;

    Institut fuer Physik Universitaet Augsburg Universitaetsstr.1, 86135 Augsburg, Germany;

    Physik-Department Lehrstuhl fuer funktionelle Materialien Technische Universitaet Muenchen James-Frank-Str.1, 85748 Garching, Germany;

    Institut fuer Physik Universitaet Augsburg Universitaetsstr.1, 86135 Augsburg, Germany;

    HASYLAB at DESY, Notkestr.85 22603 Hamburg, Germany;

    HASYLAB at DESY, Notkestr.85 22603 Hamburg, Germany;

    Institut fuer Physik Supramolekulare Systeme Humboldt-Universitaet zu Berlin Brook-Taylor-Strasse 6, 12489 Berlin, Germany;

    Institut fur Angewandte Physik Universitaet Tuebingen Auf der Morgenstelle 10, 72076 Tuebingen, Germany;

    Physik-Department Lehrstuhl fuer funktionelle Materialien Technische Universitaet Muenchen James-Frank-Str.1, 85748 Garching, Germany;

    Institut fuer Physik Universitaet Augsburg Universitaetsstr.1, 86135 Augsburg, Germany;

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