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具有100°C退火电子收集复合层的聚合物:非富勒烯太阳能电池的性能与稳定性

Performance and Stability of Polymer : Nonfullerene Solar Cells with 100 °C-Annealed Electron-Collecting Combination Layers.

作者信息

Lee Woongki, Kim Hwajeong, Lee Chulyeon, Lee Sooyong, Kim Taehoon, Kim Youngkyoo

机构信息

Organic Nanoelectronics Laboratory, KNU Institute for Nanophotonics Applications (KINPA), Department of Chemical Engineering, School of Applied Chemical Engineering, Kyungpook National University, Daegu, 41566, Republic of Korea.

Priority Research Center, Research Institute of Environmental Science & Technology, Kyungpook National University, Daegu, 41566, Republic of Korea.

出版信息

ChemSusChem. 2021 Sep 6;14(17):3488-3493. doi: 10.1002/cssc.202100841. Epub 2021 Jul 10.

Abstract

Inverted-type organic solar cells, fabricated with low-temperature-processed combination layers of hybrid electron-collecting buffer layers (ECBLs) consisting of zinc oxide (ZnO) and poly(2-ethyl-2-oxazoline) (PEOz) and additional PEOz interlayers, showed improved performance and stability. The ZnO : PEOz precursor films with various PEOz compositions (0-12 wt %) were prepared and thermally treated at 100 °C, leading to the ECBLs on which the PEOz interlayers were subsequently deposited before coating of polymer : nonfullerene bulk heterojunction layers. Results showed that the power conversion efficiency of solar cells reached approximately 9.38 and 10.11 % (average) in case of the ZnO/PEOz and ZnO : PEOz(6 wt % PEOz)/PEOz combination layers, respectively, despite the low-temperature thermal annealing process. A continuous irradiation test for 12 h under one sun condition (air mass 1.5G, 100 mW cm ) disclosed that the devices with the ZnO : PEOz(6 wt % PEOz)/PEOz combination layers were more stable than those with the ZnO/PEOz layers.

摘要

采用由氧化锌(ZnO)和聚(2-乙基-2-恶唑啉)(PEOz)组成的混合电子收集缓冲层(ECBL)的低温处理组合层以及额外的PEOz中间层制备的倒置型有机太阳能电池,表现出了更高的性能和稳定性。制备了具有不同PEOz组成(0-12 wt%)的ZnO : PEOz前驱体薄膜,并在100 °C下进行热处理,从而得到ECBL,随后在涂覆聚合物 : 非富勒烯本体异质结层之前在其上沉积PEOz中间层。结果表明,尽管采用了低温热退火工艺,但在ZnO/PEOz和ZnO : PEOz(6 wt% PEOz)/PEOz组合层的情况下,太阳能电池的功率转换效率分别达到了约9.38%和10.11%(平均值)。在一个太阳条件下(空气质量1.5G,100 mW cm )进行的12小时连续辐照测试表明,具有ZnO : PEOz(6 wt% PEOz)/PEOz组合层的器件比具有ZnO/PEOz层的器件更稳定。

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