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Distinguishing the Importance of Fullerene Phase Separation from Polymer Ordering in the Performance of Low Band Gap Polymer:Bis-Fullerene Heterojunctions

机译:区分富勒烯相分离与低序带隙聚合物:双-富勒烯异质结性能中聚合物有序分离的重要性

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摘要

One way to improve power conversion efficiency (PCE) of polymer based bulk-heterojunction (BHJ) photovoltaic cells is to increase the open circuit voltage (V_(oc)). Replacing PCBM with bis-adduct fullerenes significantly improves V_(oc) and the PCE in devices based on the conjugated polymer poly(3-hexyl thiophene) (P3HT). However, for the most promising low band-gap polymer (LBP) system, replacing PCBM with ICBA results in poor short-circuit current (J_(sc)) and PCE although V_(oc) is significantly improved. The optimization of the morphology of as-cast LBP/bis-fullerene BHJ photovoltaics is attempted by adding a co-solvent to the polymer/fullerene solution prior to film deposition. Varying the solubility of polymer and fullerene in the co-solvent, bulk heterojunctions are fabricated with no change of polymer ordering, but with changes in fullerene phase separation. The morphologies of the as-cast samples are characterized by small angle neutron scattering and neutron reftectometry. A homogenous dispersion of ICBA in LBP is found in the samples where the co-solvent is selective to the polymer, giving poor device performance. Aggregates of ICBA are formed in samples where the co-solvent Is selective to ICBA. The resultant morphology improves PCE by up to 246%. A quantitative analysis of the neutron data shows that the interfacial area between ICBA aggregates and its surrounding matrix is improved, facilitating charge transport and improving the PCE.
机译:改善基于聚合物的本体异质结(BHJ)光伏电池的功率转换效率(PCE)的一种方法是增加开路电压(V_(oc))。用双加合物富勒烯代替PCBM可以显着改善基于共轭聚合物聚(3-己基噻吩)(P3HT)的器件中的V_(oc)和PCE。但是,对于最有前途的低带隙聚合物(LBP)系统,尽管V_(oc)得到了显着改善,但用ICBA代替PCBM会导致较差的短路电流(J_(sc))和PCE。通过在膜沉积之前将助溶剂添加到聚合物/富勒烯溶液中来尝试优化铸态的LBP /双富勒烯BHJ光伏电池的形态。通过改变聚合物和富勒烯在共溶剂中的溶解度,可以制造本体异质结,而聚合物的顺序没有变化,但是富勒烯相分离也有所变化。铸态样品的形貌以小角度中子散射和中子反射测定法为特征。在共溶剂对聚合物具有选择性的样品中,发现ICBA在LBP中均匀分散。 ICBA的聚集体在样品中形成,其中助溶剂对ICBA具有选择性。最终的形态将PCE提高了246%。对中子数据的定量分析表明,ICBA聚集体及其周围基质之间的界面面积得到了改善,从而促进了电荷传输并改善了PCE。

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  • 来源
    《Advanced Functional Materials》 |2014年第46期|7284-7290|共7页
  • 作者单位

    Department of Chemistry University of Tennessee Knoxville, TN 37996, USA;

    Department of Materials Science and Engineering University of Tennessee Knoxville, TN 37996, USA;

    Center for Nanophase Materials Sciences Oak Ridge National Lab Oak Ridge, TN 37831, USA;

    Department of Materials Science and Engineering University of Tennessee Knoxville, TN 37996, USA;

    Department of Chemistry University of Tennessee Knoxville, TN 37996, USA,Chemical Sciences Division Oak Ridge National Lab Oak Ridge, TN 37831, USA;

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