Department of Electronic and Information Engineering, Research Institute for Smart Energy (RISE), Photonic Research Institute (PRI), Guangdong-Hong Kong-Macao Joint Laboratory for Photonic-Thermal-Electrical Energy Materials and Devices, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong, 999077, China.
The Hong Kong Polytechnic University Shenzhen Research Institute, Shenzhen, 518057, China.
Nat Commun. 2023 Mar 30;14(1):1760. doi: 10.1038/s41467-023-37526-5.
Non-fullerene acceptors based organic solar cells represent the frontier of the field, owing to both the materials and morphology manipulation innovations. Non-radiative recombination loss suppression and performance boosting are in the center of organic solar cell research. Here, we developed a non-monotonic intermediate state manipulation strategy for state-of-the-art organic solar cells by employing 1,3,5-trichlorobenzene as crystallization regulator, which optimizes the film crystallization process, regulates the self-organization of bulk-heterojunction in a non-monotonic manner, i.e., first enhancing and then relaxing the molecular aggregation. As a result, the excessive aggregation of non-fullerene acceptors is avoided and we have achieved efficient organic solar cells with reduced non-radiative recombination loss. In PM6:BTP-eC9 organic solar cell, our strategy successfully offers a record binary organic solar cell efficiency of 19.31% (18.93% certified) with very low non-radiative recombination loss of 0.190 eV. And lower non-radiative recombination loss of 0.168 eV is further achieved in PM1:BTP-eC9 organic solar cell (19.10% efficiency), giving great promise to future organic solar cell research.
基于非富勒烯受体的有机太阳能电池代表了该领域的前沿,这归因于材料和形态操纵方面的创新。抑制非辐射复合损耗和提高性能是有机太阳能电池研究的核心。在这里,我们通过使用 1,3,5-三氯苯作为结晶调节剂,为先进的有机太阳能电池开发了一种非单调中间态操纵策略,该策略优化了薄膜结晶过程,以非单调的方式调节体异质结的自组织,即先增强然后再放松分子聚集。结果,避免了非富勒烯受体的过度聚集,我们实现了具有低非辐射复合损耗的高效有机太阳能电池。在 PM6:BTP-eC9 有机太阳能电池中,我们的策略成功提供了创纪录的二元有机太阳能电池效率为 19.31%(经认证为 18.93%),非辐射复合损耗非常低,为 0.190eV。在 PM1:BTP-eC9 有机太阳能电池中进一步实现了更低的非辐射复合损耗,为 0.168eV(效率为 19.10%),为未来的有机太阳能电池研究带来了巨大的希望。