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精细调控的聚合物界面层提高了太阳能电池的效率。

Finely Tuned Polymer Interlayers Enhance Solar Cell Efficiency.

机构信息

Polymer Science and Engineering Department, University of Massachusetts Amherst, 120 Governors Drive, Amherst, MA 01003 (USA).

出版信息

Angew Chem Int Ed Engl. 2015 Sep 21;54(39):11485-9. doi: 10.1002/anie.201503933. Epub 2015 Jul 31.

Abstract

Three conjugated polymer zwitterions (CPZs), containing thiophene-, diketopyrrolopyrrole- (DPP), and naphthalene diimide (NDI) backbones, were synthesized with pendant zwitterions, specifically sulfobetaine groups. Diboronate-ester-functionalized bithiophene and benzothiadiazole monomers were copolymerized with zwitterion-substituted dibromothiophene, DPP, and NDI monomers by A2 + B2 Suzuki polymerization. The CPZs were incorporated into polymer solar cells (PSCs) as interlayers between the photoactive layer and Ag cathode. The thiophene-based CPZs gave power conversion efficiencies (PCEs) of about 5%, while the narrow-energy-gap DPP- and NDI-based CPZs performed exceptionally well, giving PCEs of 9.49% and 10.19%, respectively. The interlayer thickness had only a minor impact on the device performance for the DPP- and NDI-CPZs, a finding attributed to their electron-transport properties. Ultraviolet photoelectron and reflectance spectroscopies, combined with external quantum efficiency measurements, provided structure-property relationships that lend insight into the function of CPZ interlayers in PSCs. NDI-based CPZ interlayers provide some of the best performing organic solar cells reported to date, and prove useful in conjunction with high-performing polymer-active layers and stable, high-work-function, metal cathodes.

摘要

三种共轭聚合物两性离子(CPZs),具有噻吩、二酮吡咯并吡咯(DPP)和萘二酰亚胺(NDI)骨架,带有侧挂两性离子,特别是磺酸甜菜碱基团。硼酸酯官能化的联噻吩和苯并噻二唑单体与两性离子取代的二溴噻吩、DPP 和 NDI 单体通过 A2+B2Suzuki 聚合共聚。CPZs 作为光电活性层和 Ag 阴极之间的夹层被掺入聚合物太阳能电池(PSCs)中。基于噻吩的 CPZs 的功率转换效率(PCE)约为 5%,而窄能隙的 DPP 和 NDI 基 CPZs 的性能非常出色,分别给出了 9.49%和 10.19%的 PCE。对于 DPP 和 NDI-CPZs,层间厚度对器件性能的影响很小,这归因于它们的电子传输性质。紫外光电子和反射光谱,结合外量子效率测量,提供了结构-性质关系,深入了解 CPZ 夹层在 PSCs 中的作用。基于 NDI 的 CPZ 夹层提供了迄今为止报道的性能最佳的有机太阳能电池之一,并与高性能聚合物活性层和稳定、高功函数、金属阴极结合使用非常有用。

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