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嵌段共聚物调控富勒烯电子传输层提高钙钛矿光伏器件效率

Block Copolymer-Tuned Fullerene Electron Transport Layer Enhances the Efficiency of Perovskite Photovoltaics.

机构信息

Department of Materials Science and Engineering, National Chiao Tung University , 300 Hsinchu, Taiwan.

出版信息

ACS Appl Mater Interfaces. 2016 Sep 21;8(37):24603-11. doi: 10.1021/acsami.6b07690. Epub 2016 Sep 7.

Abstract

In this study, we enhanced the power conversion efficiency (PCE) of perovskite solar cells by employing an electron transfer layer (ETL) comprising [6,6]phenyl-C61-butyric acid methyl ester (PC61BM) and, to optimize its morphology, a small amount of the block copolymer polystyrene-b-poly(ethylene oxide) (PS-b-PEO), positioned on the perovskite active layer. When incorporating 0.375 wt % PS-b-PEO into PC61BM, the PCE of the perovskite photovoltaic device increased from 9.4% to 13.4%, a relative increase of 43%, because of a large enhancement in the fill factor of the device. To decipher the intricate morphology of the ETL, we used synchrotron grazing-incidence small-angle X-ray scattering for determining the PC61BM cluster size, atomic force microscopy and scanning electron microscopy for probing the surface, and transmission electron microscopy for observing the aggregation of PC61BM in the ETL. We found that the interaction between PS-b-PEO and PC61BM resulted in smaller PC61BM clusters that further aggregated into dendritic structures in some domains, a result of the similar polarities of the PS block and PC61BM; this behavior could be used to tune the morphology of the ETL. The optimal PS-b-PEO-mediated PC61BM cluster size in the ETL was 17 nm, a large reduction from 59 nm for the pristine PC61BM layer. This approach of incorporating a small amount of nanostructured block copolymer into a fullerene allowed us to effectively tune the morphology of the ETL on the perovskite active layer and resulted in enhanced fill factors of the devices and thus their device efficiency.

摘要

在这项研究中,我们通过在电子传输层(ETL)中使用包含[6,6]-苯基-C61-丁酸甲酯(PC61BM)和少量的嵌段共聚物聚苯乙烯-b-聚(氧化乙烯)(PS-b-PEO)来提高钙钛矿太阳能电池的功率转换效率(PCE),以优化其形态。当在 PC61BM 中加入 0.375wt%的 PS-b-PEO 时,钙钛矿光伏器件的 PCE 从 9.4%提高到 13.4%,相对提高了 43%,这是因为器件的填充因子有了很大的提高。为了解释 ETL 的复杂形态,我们使用同步辐射掠入射小角 X 射线散射来确定 PC61BM 团簇的大小,原子力显微镜和扫描电子显微镜来探测表面,以及透射电子显微镜来观察 ETL 中 PC61BM 的聚集。我们发现 PS-b-PEO 和 PC61BM 之间的相互作用导致 PC61BM 团簇变小,在某些区域进一步聚集形成树枝状结构,这是由于 PS 嵌段和 PC61BM 的极性相似;这种行为可以用来调整 ETL 的形态。在 ETL 中,最佳的 PS-b-PEO 介导的 PC61BM 团簇尺寸为 17nm,比原始的 PC61BM 层的 59nm 有了很大的减小。这种在富勒烯中加入少量纳米结构化嵌段共聚物的方法,使我们能够有效地调整钙钛矿活性层上的 ETL 形态,从而提高器件的填充因子,进而提高器件的效率。

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