Yang Jie, Li Quan-Song, Li Ze-Sheng
Beijing Key Laboratory of Photoelectronic/Electrophotonic Conversion Materials, Key Laboratory of Cluster Science of Ministry of Education, School of Chemistry and Chemical Engineering, Beijing Institute of Technology, 100081, Beijing, China.
Phys Chem Chem Phys. 2021 Jun 2;23(21):12321-12328. doi: 10.1039/d1cp01155c.
The acceptor in organic solar cells (OSCs) is of paramount importance for achieving a high photovoltaic performance. Based on the well-known non-fullerene acceptor Y6, we designed a set of asymmetric A-D1A'D2-A type new acceptors Y6-C, Y6-N, Y6-O, Y6-Se, and Y6-Si by substituting the two S atoms of one thieno[3,2-b]thiophene unit with C, N, O, Se, and Si atoms, respectively. The electronic, optical, and crystal properties of Y6 and the designed acceptors, as well as the interfacial charge-transfer (CT) mechanisms between the donor PM6 and the investigated acceptors have been systematically studied. It is found that the newly designed asymmetric acceptors possess suitable energy levels and strong interactions with the donor PM6. Importantly, the newly designed acceptors exhibit enhanced light harvesting ability and more CT states with larger oscillator strengths in the 40 lowest excited states. Among the multiple CT mechanisms, the direct excitation of CT states is found to be more favored in the case of PM6/newly designed acceptors than that of PM6/Y6. This work not only offers a set of promising acceptors superior to Y6, but also demonstrates that designing acceptors with asymmetric structure could be an effective strategy to improve the performance of OSCs.
有机太阳能电池(OSCs)中的受体对于实现高光伏性能至关重要。基于著名的非富勒烯受体Y6,我们通过分别用C、N、O、Se和Si原子取代一个噻吩并[3,2-b]噻吩单元的两个S原子,设计了一组不对称的A-D1A'D2-A型新受体Y6-C、Y6-N、Y6-O、Y6-Se和Y6-Si。系统研究了Y6和设计受体的电子、光学和晶体性质,以及供体PM6与所研究受体之间的界面电荷转移(CT)机制。发现新设计的不对称受体具有合适的能级,并且与供体PM6有很强的相互作用。重要的是,新设计的受体在40个最低激发态中表现出增强的光捕获能力和更多具有更大振子强度的CT态。在多种CT机制中,发现CT态的直接激发在PM6/新设计受体的情况下比PM6/Y6更受青睐。这项工作不仅提供了一组优于Y6的有前景的受体,还表明设计具有不对称结构的受体可能是提高OSCs性能的有效策略。