Xie Qian, Qiao Chunyu, Fang Jie, Xia Dongdong, Ding Feng, Wang Qian, Xu Guodong, Shan Siyu, Liao Xunfan, Chen Yiwang
Institute of Applied Chemistry, Jiangxi Academy of Sciences, Nanchang, 330096, China.
Key Lab of Fluorine and Silicon for Energy Materials and Chemistry of Ministry of Education, College of Chemistry and Materials, Jiangxi Normal University, 99 Ziyang Avenue, Nanchang, 330022, China.
Macromol Rapid Commun. 2025 Apr;46(7):e2400458. doi: 10.1002/marc.202400458. Epub 2024 Jul 29.
The molecular structure of the polymer PM6 is elaborately modified through random copolymerization by incorporating simple units of either difluoro-substituted thiophene (2FT) or dicyano-substituted thiophene (2CNT). The incorporation of the 2FT unit significantly enhanced the coplanarity of the random copolymers, leading to improved molecular crystallinity, whereas the introduction of the 2CNT unit featured the opposite effect. Thanks to the optimized morphology resembling a fiber-like interpenetrating network structure, the organic solar cells based on PM6-10%2FT:IT4F showed higher and more balanced charge mobilities, achieving a power conversion efficiency (PCE) of 12.65%, which is comparable to that of PM6-based devices. For comparison, the 2CN-series random copolymers-based devices exhibited lower PCEs of ˂12%. Interestingly, a superior PCE close to 19.0% is achieved in PM6:L8-BO:PM6-20%2CN based ternary device due to the significant improvement in open-circuit voltage. This work demonstrates that the crystallinity of donor polymers can be enhanced by introducing simple structural units to strengthen the coplanarity of the backbone, thereby achieving an optimized morphology that promotes favorable charge transport.
通过随机共聚,将二氟取代噻吩(2FT)或二氰基取代噻吩(2CNT)的简单单元引入聚合物PM6中,对其分子结构进行了精细修饰。2FT单元的引入显著增强了无规共聚物的共平面性,从而提高了分子结晶度,而2CNT单元的引入则产生相反的效果。得益于优化后的类似纤维状互穿网络结构的形态,基于PM6-10%2FT:IT4F的有机太阳能电池表现出更高且更平衡的电荷迁移率,功率转换效率(PCE)达到12.65%,与基于PM6的器件相当。相比之下,基于2CN系列无规共聚物的器件表现出较低的PCE,低于12%。有趣的是,由于开路电压的显著提高,基于PM6:L8-BO:PM6-20%2CN的三元器件实现了接近19.0%的优异PCE。这项工作表明,通过引入简单结构单元以增强主链的共平面性,可以提高供体聚合物的结晶度,从而实现促进有利电荷传输的优化形态。