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具有垂直梯度硒杂环非富勒烯受体浓度双本体异质结结构的高性能有机太阳能电池。

High-Performance Organic Solar Cells Featuring Double Bulk Heterojunction Structures with Vertical-Gradient Selenium Heterocyclic Nonfullerene Acceptor Concentrations.

作者信息

Cheng Hao-Wen, Mohapatra Anisha, Chang Yi-Ming, Liao Chuang-Yi, Hsiao Yu-Tang, Chen Chung-Hao, Lin Yu-Che, Huang Shih-Yu, Chang Bin, Yang Yang, Chu Chih-Wei, Wei Kung-Hwa

机构信息

Department of Materials Science and Engineering, Center for Emergent Functional Matter Science, National Yang Ming Chiao Tung University, Hsinchu 3001, Taiwan.

Department of Materials Science and Engineering, Center for Emergent Functional Matter Science, National Chiao Tung University, Hsinchu 3001, Taiwan.

出版信息

ACS Appl Mater Interfaces. 2021 Jun 16;13(23):27227-27236. doi: 10.1021/acsami.1c06762. Epub 2021 Jun 6.

Abstract

In this study, we prepared organic photovoltaics (OPVs) featuring an active layer comprising double bulk heterojunction (BHJ) structures, featuring binary blends of a polymer donor and concentration gradients of two small-molecule acceptors. After forming the first BHJ structure by spin-coating, the second BHJ layer was transfer-printed onto the first using polydimethylsiloxane stamps. A specially designed selenium heterocyclic small-molecule acceptor (Y6-Se-4Cl) was employed as the second acceptor in the BHJ. X-ray photoelectron spectroscopy revealed that the two acceptors formed a gradient concentration profile across the active layer, thereby facilitating charge transportation. The best power conversion efficiencies (PCEs) for the double-BHJ-structured devices incorporating PM6:Y6-Se-4Cl/PM6:Y6 and PM6:Y6-Se-4Cl/PM6:IT-4Cl were 16.4 and 15.8%, respectively; these values were higher than those of devices having one-BHJ structures based on PM6:Y6-Se-4Cl (15.0%), PM6:Y6 (15.4%), and PM6:IT-4Cl (11.6%), presumably because of the favorable vertical concentration gradient of the selenium-containing small-molecule Y6-Se-4Cl in the active layer as well as some complementary light absorption. Thus, combining two BHJ structures with a concentration gradient of the two small-molecule acceptors can be an effective approach for enhancing the PCEs of OPVs.

摘要

在本研究中,我们制备了有机光伏器件(OPV),其活性层具有双本体异质结(BHJ)结构,由聚合物供体与两种小分子受体的浓度梯度组成的二元共混物构成。通过旋涂形成第一个BHJ结构后,使用聚二甲基硅氧烷印章将第二个BHJ层转印到第一个之上。一种经过特殊设计的含硒杂环小分子受体(Y6-Se-4Cl)被用作BHJ中的第二种受体。X射线光电子能谱表明,两种受体在活性层上形成了梯度浓度分布,从而促进了电荷传输。采用PM6:Y6-Se-4Cl/PM6:Y6和PM6:Y6-Se-4Cl/PM6:IT-4Cl的双BHJ结构器件的最佳功率转换效率(PCE)分别为16.4%和15.8%;这些值高于基于PM6:Y6-Se-4Cl(15.0%)、PM6:Y6(15.4%)和PM6:IT-4Cl(11.6%)的单BHJ结构器件,这可能是由于活性层中含硒小分子Y6-Se-4Cl具有有利的垂直浓度梯度以及一些互补光吸收。因此,将两个BHJ结构与两种小分子受体的浓度梯度相结合可以成为提高OPV的PCE的有效方法。

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