Cao Jingyue, Xu Zheng
Key Laboratory of Luminescence and Optical Information, Beijing Jiaotong University, Ministry of Education, Beijing 100044, China.
Institute of Optoelectronics Technology, Beijing Jiaotong University, Beijing 100044, China.
Polymers (Basel). 2025 Jan 22;17(3):284. doi: 10.3390/polym17030284.
Planar heterojunction (PHJ) is employed to obtain proper vertical phase separation for highly efficient polymer solar cells (PSCs). However, it heavily relies on the choice of orthogonal solvent in the production process. Here, we fabricated a pseudo-bilayer bulk heterojunction (PBHJ) PSC with cross-distribution in the vertical direction by preparing two layers of PM6 and BTP-eC9 blends in an -XY solution with different dilution ratios to study the morphological evolution of PBHJ film. We found that the PBHJ film exhibits more uniform and suitable continuous interpenetrating network morphology and proper phase separation in the vertical direction for the formation of p-i-n structure. This provides an effective channel for exciton dissociation and charge transport, which is confirmed by both exciton generation simulations and charge dynamics measurements. The PBHJ devices can effectively inhibit trap recombination and accelerate charge separation and transfer. Based on good active layer morphology and balanced charge mobility, all-green solvent-processed PSCs with champion power conversion efficiencies (PCEs) of 18.48% and 16.83% are obtained in PM6:BTP-eC9 and PTQ10:BTP-eC9 systems, respectively. This work reveals the potential mechanism of morphological evolution induced by the PBHJ structure and provides an alternative approach for developing solution processing PSCs.
平面异质结(PHJ)被用于为高效聚合物太阳能电池(PSC)获得合适的垂直相分离。然而,它在生产过程中严重依赖于正交溶剂的选择。在此,我们通过在具有不同稀释比例的-XY溶液中制备两层PM6和BTP-eC9共混物,制造了一种在垂直方向上具有交叉分布的伪双层体异质结(PBHJ)PSC,以研究PBHJ薄膜的形态演变。我们发现,PBHJ薄膜表现出更均匀且合适的连续互穿网络形态以及在垂直方向上合适的相分离,有利于形成p-i-n结构。这为激子解离和电荷传输提供了有效通道,这在激子产生模拟和电荷动力学测量中均得到证实。PBHJ器件能够有效抑制陷阱复合并加速电荷分离与转移。基于良好的活性层形态和平衡的电荷迁移率,在PM6:BTP-eC9和PTQ10:BTP-eC9体系中分别获得了具有18.48%和16.83%的冠军功率转换效率(PCE)的全绿色溶剂处理PSC。这项工作揭示了PBHJ结构诱导的形态演变的潜在机制,并为开发溶液处理PSC提供了一种替代方法。