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首页> 外文期刊>ACS Omega >Efficient Organic Solar Cells with Polymer-Small Molecule: Fullerene Ternary Active Layers
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Efficient Organic Solar Cells with Polymer-Small Molecule: Fullerene Ternary Active Layers

机译:高效的有机太阳能电池与聚合物 - 小分子:富勒烯三元活性层

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摘要

In this study, we report organic solar cells (OSCs) fabricated by a polymer-small molecule: the fullerene ternary active layer. It is found that a significantly enhanced power conversion efficiency contributed to the enhanced short-circuit current density and fill factor (FF). Investigation of absorption spectra and external quantum efficiency spectra indicate that the enhancement in photocurrent originates from the improved light absorption attributed to the small molecule. Further investigations by grazing-incidence wide-angle X-ray scattering, transmission electron microscopy, and atomic force microscopy reveal that charge transport within the ternary active layer is facilitated by a reduced π–π distance between the adjacent polymer chains along the out-of-plane direction, good miscibilities between ternary components, and the rougher surface of the resultant thin film. As a result, the hole mobility of the polymer electron donor and electron mobility of the fullerene electron acceptor are considerably increased, resulting in enhanced FFs. Our studies provide a facile route to realize efficient OSCs.
机译:在本研究中,我们报告由聚合物 - 小分子制造的有机太阳能电池(OSC):富勒烯三元活性层。发现显着增强的功率转换效率有助于增强的短路电流密度和填充因子(FF)。吸收光谱和外量子效率光谱的研究表明,光电流的增强来自归因于小分子的改善的光吸收。通过放牧发生型广角X射线散射,透射电子显微镜和原子力显微镜进行进一步研究,揭示三元有源层内的电荷传输通过沿外的相邻聚合物链之间的减小的π-π距离而促进 - 平板方向,三元组分之间的良好误导,以及所得薄膜的粗糙表面。结果,富勒烯电子受体的聚合物电子给体和电子迁移率的空穴迁移率显着增加,导致增强的FF。我们的研究提供了一种实现有效OSC的便利路线。

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