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A polymer tandem solar cell with 10.6 power conversion efficiency

机译:功率转换效率为10.6%的聚合物串联太阳能电池

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摘要

An effective way to improve polymer solar cell efficiency is to use a tandem structure, as a broader part of the spectrum of solar radiation is used and the thermalization loss of photon energy is minimized. In the past, the lack of high-performance low-bandgap polymers was the major limiting factor for achieving high-performance tandem solar cell. Here we report the development of a high-performance low bandgap polymer (bandgap <1.4 eV), poly[2,7-(5,5-bis-(3,7-dimethyloctyl)-5H-dithieno[3,2-b:2′,3′-d]pyran)-alt-4,7-(5,6-difluoro-2,1,3-benzothia diazole)] with a bandgap of 1.38 eV, high mobility, deep highest occupied molecular orbital. As a result, a single-junction device shows high external quantum efficiency of >60% and spectral response that extends to 900 nm, with a power conversion efficiency of 7.9%. The polymer enables a solution processed tandem solar cell with certified 10.6% power conversion efficiency under standard reporting conditions (25 °C, 1,000 Wm−2, IEC 60904-3 global), which is the first certified polymer solar cell efficiency over 10%.
机译:提高聚合物太阳能电池效率的有效方法是使用串联结构,因为使用了太阳辐射光谱的较宽部分,并使光子能量的热损失最小化。过去,缺乏高性能的低带隙聚合物是实现高性能串联太阳能电池的主要限制因素。在这里,我们报告了高性能低带隙聚合物(带隙<1.4 eV),聚[2,7-(5,5-双-(3,7-二甲基辛基)-5H-二硫代[3,2-b] :: 2',3'-d] pyran)-alt-4,7-(5,6-difluoro-2,1,3-benzothia diazole)],带隙为1.38 eV,高迁移率,深占据分子轨道最高。结果,单结器件显示了> 60%的高外部量子效率,并且光谱响应扩展到900 nm,功率转换效率为7.9%。该聚合物在标准报告条件下(25 C,1,000 Wm -2 ,IEC 60904-3全球),具有经过认证的10.6%功率转换效率的溶液处理串联太阳能电池,这是第一款获得认证的聚合物太阳能电池效率超过10%。

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