High‐Performance Ternary Organic Solar Cells with Enhanced Luminescence Efficiency and Miscibility Enabled by Two Compatible Acceptors

Author:

Zhang Cai'e1,Zheng Rui2,Huang Hao2,Ran Guangliu3,Liu Wenxu2,Chen Qiaoling2,Wu Baohua4,Wang Hang5,Luo Zhenghui1ORCID,Zhang Wenkai3,Ma Wei4,Bo Zhishan25ORCID,Yang Chuluo1ORCID

Affiliation:

1. Shenzhen Key Laboratory of New Information Display and Storage Materials College of Materials Science and Engineering Shenzhen University Shenzhen 518060 China

2. Key Laboratory of Energy Conversion and Storage Materials College of Chemistry Beijing Normal University Beijing 100875 China

3. Department of Physics and Applied Optics Beijing Area Major Laboratory Beijing Normal University Beijing 100875 China

4. State Key Laboratory for Mechanical Behavior of Materials Xi'an Jiao tong University Xi'an 710049 China

5. College of Textiles & Clothing Qingdao University Qingdao 266071 China

Abstract

AbstractThe ternary strategy has proven to be an effective method for improving the efficiency of organic solar cells (OSCs). However, designing and selecting the third component still pose challenges. In this study, this issue is addressed by focusing on the PBDB‐T:Y18‐F binary system and introducing a new, strong luminescent, asymmetric small‐molecule acceptor (SMA) called L8‐CBIC‐Cl, which shares a similar skeleton with Y18‐F. The similarity in molecular framework facilitates good compatibility between the two acceptors, resulting in the formation of an alloy‐like acceptor phase. Furthermore, the norbornenyl‐modified end group in L8‐CBIC‐Cl contributes to its strong luminescent properties, which in turn leads to a low non‐radiative energy loss and a high open‐circuit voltage. Consequently, the PBDB‐T:L8‐CBIC‐Cl:Y18‐F based ternary devices realize a high power conversion efficiency (PCE) up to 17.01%, which is higher than PBDB‐T:Y18‐F device (14.49%). Importantly, L8‐CBIC‐Cl exhibits a good universality as a guest acceptor in other three binary systems (D18:Y6, D18:BTP‐eC9‐4F, and D18:L8‐BO). The D18:L8‐BO:L8‐CBIC‐Cl device shows an impressive efficiency of 19%. The work demonstrates that employing SMA with a high PLQY and better miscibility with host acceptor as the third component has a great potential for developing high‐efficiency ternary OSCs.

Funder

National Natural Science Foundation of China

Office of Science

Basic Energy Sciences

U.S. Department of Energy

Publisher

Wiley

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment

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