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含氟共聚物 PCPDTBT,具有增强的开路电压和降低的复合,可用于高效聚合物太阳能电池。

Fluorinated copolymer PCPDTBT with enhanced open-circuit voltage and reduced recombination for highly efficient polymer solar cells.

机构信息

Institut für Physik und Astronomie, Universität Potsdam, Karl-Liebknecht-Strasse 24-25, 14476 Potsdam, Germany.

出版信息

J Am Chem Soc. 2012 Sep 12;134(36):14932-44. doi: 10.1021/ja305039j. Epub 2012 Aug 29.

Abstract

A novel fluorinated copolymer (F-PCPDTBT) is introduced and shown to exhibit significantly higher power conversion efficiency in bulk heterojunction solar cells with PC(70)BM compared to the well-known low-band-gap polymer PCPDTBT. Fluorination lowers the polymer HOMO level, resulting in high open-circuit voltages well exceeding 0.7 V. Optical spectroscopy and morphological studies with energy-resolved transmission electron microscopy reveal that the fluorinated polymer aggregates more strongly in pristine and blended layers, with a smaller amount of additives needed to achieve optimum device performance. Time-delayed collection field and charge extraction by linearly increasing voltage are used to gain insight into the effect of fluorination on the field dependence of free charge-carrier generation and recombination. F-PCPDTBT is shown to exhibit a significantly weaker field dependence of free charge-carrier generation combined with an overall larger amount of free charges, meaning that geminate recombination is greatly reduced. Additionally, a 3-fold reduction in non-geminate recombination is measured compared to optimized PCPDTBT blends. As a consequence of reduced non-geminate recombination, the performance of optimized blends of fluorinated PCPDTBT with PC(70)BM is largely determined by the field dependence of free-carrier generation, and this field dependence is considerably weaker compared to that of blends comprising the non-fluorinated polymer. For these optimized blends, a short-circuit current of 14 mA/cm(2), an open-circuit voltage of 0.74 V, and a fill factor of 58% are achieved, giving a highest energy conversion efficiency of 6.16%. The superior device performance and the low band-gap render this new polymer highly promising for the construction of efficient polymer-based tandem solar cells.

摘要

引入了一种新型氟化共聚物(F-PCPDTBT),与知名的低带隙聚合物 PCPDTBT 相比,其在具有 PC(70)BM 的体异质结太阳能电池中表现出显著更高的功率转换效率。氟化降低了聚合物 HOMO 能级,导致开路电压超过 0.7 V。光学光谱和能量分辨透射电子显微镜的形态研究表明,氟化聚合物在原始和共混层中更强烈地聚集,需要更少的添加剂来实现最佳器件性能。通过线性增加电压的延迟收集场和电荷提取,深入了解氟化对自由电荷载流子产生和复合的场依赖性的影响。结果表明,F-PCPDTBT 表现出自由电荷载流子产生的场依赖性明显减弱,同时自由电荷的总量增加,这意味着复合大大减少。此外,与优化的 PCPDTBT 共混物相比,测量到非复合复合减少了 3 倍。由于非复合复合减少,氟化 PCPDTBT 与 PC(70)BM 的优化共混物的性能主要由自由载流子产生的场依赖性决定,与包含非氟化聚合物的共混物相比,该场依赖性明显减弱。对于这些优化的共混物,实现了 14 mA/cm² 的短路电流、0.74 V 的开路电压和 58%的填充因子,最高能量转换效率达到 6.16%。这种新聚合物的优越的器件性能和低带隙使其非常有前途用于构建高效的聚合物基串联太阳能电池。

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