首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >A selenophene substituted double-cable conjugated polymer enables efficient single-component organic solar cells
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A selenophene substituted double-cable conjugated polymer enables efficient single-component organic solar cells

机译:硒代取代的双电缆共轭聚合物使能有效的单组分有机太阳能电池

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In this work, a selenophene based double-cable conjugated polymer has been developed for application in single-component organic solar cells (SCOSCs). When incorporating selenophene into the conjugated backbones, the new double-cable polymer exhibited a red-shifted absorption spectrum, a high-lying frontier energy level and good crystallinity. The polymer as a single photo-active layer was applied in SCOSCs, providing a high efficiency of 6.25% with a high photocurrent of 12.68 mA cm(-2), which is among the highest performance in SCOSCs. We further studied the nanophase separation of the selenophene based double-cable polymer, revealing that the planar and crystalline conjugated backbones caused poor crystalline cooperativity between the conjugated backbones and side chains containing electron acceptors. This could explain the relatively low fill factor in SCOSCs due to the possibly strong charge recombination.
机译:在这项工作中,已经开发了一种基于硒的双电缆共轭聚合物用于在单组分有机太阳能电池(SCOSC)中。 将硒素掺入共轭骨架时,新的双电缆聚合物表现出红移吸收光谱,高位前沿能量水平和良好的结晶度。 作为单个光活性层的聚合物在SCOSC中施用,高效率为6.25%,高光电流为12.68 mA cm(-2),这是SCOSCS中最高性能之一。 我们进一步研究了基于硒的双电缆聚合物的纳米级分离,揭示了平面和结晶缀合的骨架在含有电子受体之间的共轭骨架和侧链之间引起差的结晶合作。 这可以解释SCOSC的相对低的填充因子,因为可能是强烈的电荷重组。

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