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首页> 外文期刊>Physical review >Phase separation analysis of bulk heterojunctions in small-molecule organic solar cells using zinc-phthalocyanine and C_(60)
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Phase separation analysis of bulk heterojunctions in small-molecule organic solar cells using zinc-phthalocyanine and C_(60)

机译:使用锌酞菁和C_(60)分析小分子有机太阳能电池中本体异质结的相分离分析

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摘要

To achieve efficient organic solar cells, donor and acceptor molecules are mixed in the photoactive layer to form a so-called bulk heterojunction. Due to molecular interactions, a certain degree of phase separation between donor and acceptor domains arises, which is necessary to achieve efficient charge extraction within the absorber layer. However, the mechanism that induces the phase separation is not fully understood and gaining detailed information about the molecular arrangement within these blend layers is quite challenging. We show that grazing incidence x-ray diffraction, combined with variable angle spectroscopic ellipsometry is a suitable way to investigate the molecular structure of blend layers in detail, consisting of a mixture of zinc-phthalocyanine (ZnPc) and C_(60). The degree of phase separation within the blend layer is influenced by substrate heating during the co-evaporation of ZnPc and C_(60) and by a variation of the mixing ratio. The effect of different blend layer morphologies on optical and electrical device performance is investigated by solar cell characterization and mobility measurements. We find that the molecular arrangement of C_(60) provides the essential driving force for efficient phase separation. Whereas spherical C_(60) molecules are able to form crystalline domains when deposited at elevated substrate temperatures, no ZnPc crystallites Eire observed, although the planar ZnPc molecules are not randomly oriented but standing upright within its domains. Comparing specular and grazing incidence x-ray diffraction, we find that only the latter method is able to detect nanocrystalline C_(60) in thin films due to its polycrystalline nature and small sized nanocrystallites. Solar cell measurements show an increase in fill factor and external quantum efficiency signal for blends with enhanced phase separation, induced by higher substrate temperatures. However, grazing incidence x-ray diffraction measurements reveal that ZnPc and C_(60) already form separate domains in unheated ZnPc:C_(60) blends, which provide fill factors close to 50% in the corresponding solar cells.
机译:为了获得有效的有机太阳能电池,将供体和受体分子在光敏层中混合以形成所谓的体异质结。由于分子相互作用,在供体和受体域之间出现了一定程度的相分离,这对于在吸收层内实现有效的电荷提取是必要的。然而,引起相分离的机理尚未完全理解,并且获得有关这些共混层内分子排列的详细信息非常具有挑战性。我们表明,掠入射x射线衍射结合可变角度光谱椭圆仪是一种详细研究共混物层分子结构的合适方法,该混合物由锌-酞菁(ZnPc)和C_(60)的混合物组成。共混层内的相分离程度受ZnPc和C_(60)共蒸发期间的基板加热以及混合比例的变化影响。通过太阳能电池表征和迁移率测量研究了不同共混层形态对光学和电气设备性能的影响。我们发现C_(60)的分子排列为有效的相分离提供了必要的驱动力。球形C_(60)分子在较高的底物温度下沉积时能够形成结晶域,尽管平面ZnPc分子不是随机取向而是在其域中直立,但没有观察到ZnPc晶体。比较镜面反射和掠入射x射线衍射,我们发现只有后者的方法能够检测薄膜中的纳米晶体C_(60),因为它具有多晶性质和小尺寸的纳米晶体。太阳能电池的测量结果表明,由较高的基材温度引起的掺混物的填充系数和外部量子效率信号均增加,且相分离增强。但是,掠入射X射线衍射测量表明ZnPc和C_(60)在未加热的ZnPc:C_(60)混合物中已经形成了单独的畴,这在相应的太阳能电池中提供了接近50%的填充因子。

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  • 来源
    《Physical review》 |2012年第24期|p.245314.1-245314.10|共10页
  • 作者单位

    Institut fuer Angewandte Photophysik, Technische Universitaet Dresden, D-01069 Dresden, Germany;

    Leibniz-Institut fuer Polymerforschung Dresden e.V, D-01005 Dresden, Germany,University of California Santa Barbara, US;

    Fraunhofer Center Nanoelectronic Technologies (CNT), 01099 Dresden, Germany;

    Institut fuer Angewandte Photophysik, Technische Universitaet Dresden, D-01069 Dresden, Germany;

    Institut fuer Angewandte Photophysik, Technische Universitaet Dresden, D-01069 Dresden, Germany,Novaled AG, 01307 Dresden, Germany;

    Institut fuer Angewandte Photophysik, Technische Universitaet Dresden, D-01069 Dresden, Germany;

    Leibniz-Institut fuer Polymerforschung Dresden e.V, D-01005 Dresden, Germany;

    Institut fuer Angewandte Photophysik, Technische Universitaet Dresden, D-01069 Dresden, Germany;

    Institut fuer Angewandte Photophysik, Technische Universitaet Dresden, D-01069 Dresden, Germany;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    organic compounds and polymers; interfaces; heterostructures; nanostructures;

    机译:有机化合物和聚合物;接口;异质结构纳米结构;

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