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首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Silole-containing polymers for high-efficiency polymer solar cells
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Silole-containing polymers for high-efficiency polymer solar cells

机译:用于高效聚合物太阳能电池的含硅酮聚合物

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摘要

Silole-containing conjugated polymers (P1 and P2) carrying methyl and octyl substituents, respectively, on the silicon atom were synthesized by Suzuki polycondensation. They show strong absorption in the region of 300-700 nm with a band gap of about 1.9 eV. The two silole-containing conjugated polymers were used to fabricate polymer solar cells by blending with PC_(61)BM and PC_(71)BM as the active layer. The best performance of photovoltaic devices based on P1/PC_(71)BM active layer exhibited power conversion efficiency (PCE) of 2.72%, whereas that of the photovoltaic cells fabricated with P2/PC_(71)BM exhibited PCE of 5.08%. 1,8-Diiodooctane was used as an additive to adjust the morphology of the active layer during the device optimization. PCE of devices based on P2/PC_(71)BM was further improved to 6.05% when a TiO_x layer was used as a hole-blocking layer.
机译:通过铃木缩聚合成了分别在硅原子上带有甲基和辛基取代基的含硅的共轭聚合物(P1和P2)。它们在300-700 nm范围内显示出强吸收,带隙约为1.9 eV。通过与PC_(61)BM和PC_(71)BM混合作为活性层,将两种含硅醇盐的共轭聚合物用于制造聚合物太阳能电池。基于P1 / PC_(71)BM活性层的光伏器件的最佳性能表现出2.72%的功率转换效率(PCE),而使用P2 / PC_(71)BM制备的光伏电池表现出5.08%的PCE。 1,8-二碘辛烷用作添加剂,可在器件优化过程中调节有源层的形貌。当将TiO_x层用作空穴阻挡层时,基于P2 / PC_(71)BM的器件的PCE进一步提高到6.05%。

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