Shi Yanan, Chang Yilin, Lu Kun, Chen Zhihao, Zhang Jianqi, Yan Yangjun, Qiu Dingding, Liu Yanan, Adil Muhammad Abdullah, Ma Wei, Hao Xiaotao, Zhu Lingyun, Wei Zhixiang
Chinese Academy of Sciences (CAS) key laboratory of nanosystem and hierarchical fabrication, National Center for Nanoscience and Technology, Beijing, 100190, China.
University of Chinese Academy of Sciences, Beijing, 100049, China.
Nat Commun. 2022 Jun 7;13(1):3256. doi: 10.1038/s41467-022-30927-y.
Minimizing energy loss is of critical importance in the pursuit of attaining high-performance organic solar cells. Interestingly, reorganization energy plays a crucial role in photoelectric conversion processes. However, the understanding of the relationship between reorganization energy and energy losses has rarely been studied. Here, two acceptors, Qx-1 and Qx-2, were developed. The reorganization energies of these two acceptors during photoelectric conversion processes are substantially smaller than the conventional Y6 acceptor, which is beneficial for improving the exciton lifetime and diffusion length, promoting charge transport, and reducing the energy loss originating from exciton dissociation and non-radiative recombination. So, a high efficiency of 18.2% with high open circuit voltage above 0.93 V in the PM6:Qx-2 blend, accompanies a significantly reduced energy loss of 0.48 eV. This work underlines the importance of the reorganization energy in achieving small energy losses and paves a way to obtain high-performance organic solar cells.
在追求高性能有机太阳能电池的过程中,将能量损失降至最低至关重要。有趣的是,重组能在光电转换过程中起着关键作用。然而,对重组能与能量损失之间关系的理解却鲜有研究。在此,开发了两种受体Qx-1和Qx-2。这两种受体在光电转换过程中的重组能明显小于传统的Y6受体,这有利于提高激子寿命和扩散长度,促进电荷传输,并减少激子解离和非辐射复合产生的能量损失。因此,在PM6:Qx-2共混物中实现了18.2%的高效率以及高于0.93 V的高开路电压,同时能量损失显著降低至0.48 eV。这项工作强调了重组能在实现低能量损失方面的重要性,并为获得高性能有机太阳能电池铺平了道路。