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Characterization of large area flexible plastic solar cells based on conjugated polymer/fullerene composites

机译:基于共轭聚合物/富勒烯复合材料的大面积柔性塑料太阳能电池的表征

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摘要

The development of solar cells based on composites of organic conjugated semi-conducting polymers with fullerene derivatives can provide a new method in the exploitation of solar energy. Organic solar cells must fulfill the criteria of stability, efficiency and reduction of production costs to find new applications. Specially, the bulk donor-acceptor heterojunctions between conjugated polymers and fullerenes have been successfully utilized for photovoltaic devices with high carrier collection efficiency compared to the devices made from single components. In this work we present measurements of the photovoltaic response of bulk donor-acceptor heterojunction between the conjugated polymer (as a donor, D) poly(3-octylthiophene), P3OT and fullerenes, (as acceptor, A), deposited between indium tin oxide and aluminum electrodes. These devices are based on ultrafast, reversible, metastable photoinduced electron transfer and charge separation. The quality and homogeneity of composite films as well as the choice of the substrates strongly influence the efficiency of the solar cells. One of the most important limiting factors in the performance of this present types of molecular solar cells based on interpenetrating networks of conjugated polymers and fullerene derivatives is the charge carrier transport in the active layer. This transport is driven by the electrical field provided externally by the top and bottom electrodes with different work functions. We present here efficiency and stability studies on large area (6cm × 6 cm) flexible plastic solar cells with monochromatic energy conversion efficiency ηe about 1.4% and carrier collection efficiency nearly 20%.
机译:基于有机共轭半导体与富勒烯衍生物的复合材料的太阳能电池的开发可以提供一种利用太阳能的新方法。有机太阳能电池必须满足稳定性,效率和降低生产成本的标准,才能找到新的应用。特别地,与由单组分制成的器件相比,共轭聚合物和富勒烯之间的本体供体-受体异质结已成功用于具有高载流子收集效率的光伏器件。在这项工作中,我们介绍了沉积在铟锡氧化物之间的共轭聚合物(作为供体,D)聚(3-辛基噻吩),P3OT和富勒烯(作为受体,A)之间的本体供体-受体异质结的光伏响应的测量结果。和铝电极。这些设备基于超快,可逆,亚稳态的光诱导电子转移和电荷分离。复合膜的质量和均质性以及基板的选择强烈影响太阳能电池的效率。基于共轭聚合物和富勒烯衍生物互穿网络的这种当前类型的分子太阳能电池的性能中最重要的限制因素之一是活性层中的电荷载流子传输。这种传输是由具有不同功函数的顶部和底部电极在外部提供的电场驱动的。我们在此介绍对大面积(6cm×6 cm)柔性塑料太阳能电池的效率和稳定性研究,其单色能量转换效率ηe约为1.4%,载流子收集效率接近20%。

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