堆积
材料科学
电子迁移率
各向异性
光电子学
太赫兹辐射
电荷(物理)
载流子
平面的
太赫兹光谱与技术
表征(材料科学)
光谱学
有机半导体
退火(玻璃)
电极
凝聚态物理
太赫兹时域光谱学
电场
有机太阳能电池
作者
Jiale He,Jiacong Li,Hanyue Yang,Ruoyu Zheng,Chunfeng Zhang,Rui Wang
摘要
In organic photovoltaic (OPV) devices, charge transport from donor–acceptor interfaces to electrodes is crucial for efficient photon-to-current conversion. In state-of-the-art OPV systems featuring non-fullerene acceptors (NFAs), the face-on packing of planar NFAs can result in anisotropic charge transport mobilities in the in-plane and out-of-plane directions. Nevertheless, compared to the extensive research focusing on in-plane charge mobility using time-resolved terahertz spectroscopy (TRTS), the more critical out-of-plane charge mobility has rarely been explored due to technical limitations. Here, we utilized a high-sensitivity TRTS detection system that varies the angle of incident light to examine the mobility differences in different directions within a model system of a PM6:Y6 film. Our findings indicate that at an optimized annealing temperature of 110 °C, the out-of-plane mobility reaches 2.4 cm2 V−1 s−1, approximately six times that of the in-plane mobility, which is 0.41 cm2 V−1 s−1. This substantial anisotropy necessitates a combination of molecular-level π–π stacking and optimal domain morphology. These results provide key evidence for optimizing molecular orientation to establish favorable charge transport pathways for better-performing OPV devices.
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