化学
有机太阳能电池
呋喃
三元运算
掉期(金融)
光伏系统
聚合物
平面度测试
能量转换效率
纳米技术
混溶性
光伏
金属有机骨架
接受者
Atom(片上系统)
共聚物
电子供体
组合化学
工作(物理)
有机电子学
光化学
可持续能源
量子效率
聚合物太阳能电池
电离能
化学物理
二进制数
作者
Rulin Hao,Zi’ang Zhai,Siyuan Li,Yulin Sha,Shaowen Chu,Rui Wang,Kailin Yin,Fang Wang,L K Zhang,Xiaonan Ma,Hongliang Zhong,Dongbing Zhao
摘要
The pursuit of high-performance wide-bandgap polymer (WBG) donors remains a pivotal challenge for advancing nonfullerene organic solar cells (OSCs). Herein, we address this challenge via creating a novel electron-deficient building block, difuranylphthalimide (DFI), via a strategic sulfur-to-oxygen atom swap in dithienophthalimide (DTI). This atomic substitution engenders a polymer, PDFI, with distinctly advantageous properties derived from the furan moieties: a deeper highest occupied molecular orbital (HOMO) energy level, enhanced backbone planarity and crystallinity, and superior miscibility with state-of-the-art nonfullerene acceptors. These characteristics collectively foster optimized blend morphology with tighter π-π stacking, more efficient charge transport, and significantly suppressed nonradiative energy loss. Consequently, binary OSCs based on PDFI and the acceptor BTP-eC9 achieve an impressive power conversion efficiency (PCE) of 19.17%, which is the highest value achieved by furan-containing donor materials in OSCs to date. Furthermore, incorporating PDFI as a third component into the PM6:L8-BO system yields a ternary device with a PCE exceeding 20%. This work not only introduces PDFI as a top-performing nonhalogenated polymer donor but also establishes the incorporation of furan into electron-deficient units as a transformative strategy for developing high-efficiency, sustainable organic photovoltaic materials.
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