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固溶添加剂助力效率提升至 19.2%的双有机太阳能电池

Binary Organic Solar Cells with 19.2% Efficiency Enabled by Solid Additive.

机构信息

State Key Laboratory of Polymer Physics and Chemistry, Beijing National Laboratory for Molecular, Institute of Chemistry Chinese Academy of Sciences, Beijing, 100190, China.

University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Adv Mater. 2023 Jun;35(25):e2301583. doi: 10.1002/adma.202301583. Epub 2023 May 1.

Abstract

Morphology optimization is critical for achieving high efficiency and stable bulk-heterojunction (BHJ) organic solar cells (OSCs). Herein, the use of 3,5-dichlorobromobenzene (DCBB) with high volatility and low cost to manipulate evolution of the BHJ morphology and improve the operability and photostability of OSCs is proposed. Systematic simulations reveal the charge distribution of DCBB and its non-covalent interaction with the active layer materials. The addition of DCBB can effectively tune the aggregation of PBQx-TF:eC9-2Cl during film formation, resulting in a favorable phase separation and a reinforced molecular packing. As a result, a power conversion efficiency of 19.2% (certified as 19.0% by the National Institute of Metrology) for DCBB-processed PBQx-TF:eC9-2Cl-based OSCs, which is the highest reported value for binary OSCs, is obtained. Importantly, the DCBB-processed devices exhibit superior photostability and have thus considerable application potential in the printing of large-area devices, demonstrating outstanding universality in various BHJ systems. The study provides a facile approach to control the BHJ morphology and enhances the photovoltaic performance of OSCs.

摘要

形态优化对于实现高效率和稳定的体异质结(BHJ)有机太阳能电池(OSCs)至关重要。本文提出了使用具有高挥发性和低成本的 3,5-二氯溴苯(DCBB)来操纵 BHJ 形态的演化,并提高 OSCs 的可操作性和光稳定性。系统模拟揭示了 DCBB 的电荷分布及其与活性层材料的非共价相互作用。添加 DCBB 可以有效地调节 PBQx-TF:eC9-2Cl 在成膜过程中的聚集,从而实现有利的相分离和增强的分子堆积。结果,获得了 DCBB 处理的 PBQx-TF:eC9-2Cl 基 OSCs 的功率转换效率为 19.2%(经国家计量研究院认证为 19.0%),这是二元 OSCs 中报道的最高值。重要的是,DCBB 处理的器件表现出优异的光稳定性,因此在大面积器件的印刷方面具有相当大的应用潜力,在各种 BHJ 系统中表现出突出的通用性。该研究提供了一种控制 BHJ 形态的简便方法,并提高了 OSCs 的光伏性能。

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