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用于三元有机太阳能电池的芘稠合二聚受体,效率达19%且具有高热稳定性。

A Pyrene-Fused Dimerized Acceptor for Ternary Organic Solar Cells with 19% Efficiency and High Thermal Stability.

作者信息

Liu Xucong, Zhang Zhou, Wang Chao, Zhang Cuifen, Liang Shijie, Fang Haisheng, Wang Bo, Tang Zheng, Xiao Chengyi, Li Weiwei

机构信息

Beijing Advanced Innovation Center for Soft Matter Science and Engineering & State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology, Beijing, 100029, P. R. China.

Center for Advanced Low-dimension Materials, College of Materials Science and Engineering, Donghua University, Shanghai, 201620, P. R. China.

出版信息

Angew Chem Int Ed Engl. 2024 Jan 2;63(1):e202316039. doi: 10.1002/anie.202316039. Epub 2023 Nov 29.

DOI:10.1002/anie.202316039
PMID:37983686
Abstract

A pyrene-fused dimerized electron acceptor has been successfully synthesized and subsequently incorporated as the third component in ternary organic solar cells (OSCs). Diverging from the traditional dimerized acceptors with a linear configuration, this novel electron acceptor displays a distinctive "butterfly-like" structure, comprising two Y-acceptors as wings fused with a pyrene-based backbone. The extended π-conjugated backbone and the electron-donating nature of pyrene enable the new acceptor to show low solubility, elevated glass transition temperature (T ), and low-lying frontier energy levels. Consequently, the new dimerized acceptor seamlessly integrates as the third component into ternary OSCs, enhancing electron transporting properties, reducing non-radiative voltage loss, and elevating open-circuit voltage. These merits have enabled the ternary OSCs to show an exceptional efficiency of 19.07%, a marked improvement compared to the 17.6% attained in binary OSCs. More importantly, the high T exhibited by the pyrene-fused electron acceptor helps to stabilize the morphology of the photoactive layer thermal-treated at 70 °C, retaining 88.7% efficiency over 600 hours. For comparison, binary OSCs experience a decline to 73.7% efficiency after the same duration. These results indicate that the "butterfly-like" design and the incorporation of a pyrene unit is a promising strategy in the development of dimerized electron acceptors for OSCs.

摘要

一种芘稠合二聚电子受体已成功合成,并随后作为第三组分引入三元有机太阳能电池(OSC)中。与具有线性构型的传统二聚受体不同,这种新型电子受体呈现出独特的“蝴蝶状”结构,由两个作为翅膀的Y型受体与基于芘的主链稠合而成。芘的扩展π共轭主链和给电子性质使新受体具有低溶解度、升高的玻璃化转变温度(T)和较低的前沿能级。因此,新的二聚受体作为第三组分无缝集成到三元OSC中,增强了电子传输性能,降低了非辐射电压损失,并提高了开路电压。这些优点使三元OSC显示出19.07%的优异效率,与二元OSC中达到的17.6%相比有显著提高。更重要的是,芘稠合电子受体表现出的高T有助于稳定在70°C热处理的光活性层的形态,在600小时内保持88.7%的效率。相比之下,二元OSC在相同持续时间后效率下降到73.7%。这些结果表明,“蝴蝶状”设计和芘单元的引入是开发用于OSC的二聚电子受体的一种有前途的策略。

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