Yu Yang-Yen, Peng Yan-Cheng, Chiu Yu-Cheng, Liu Song-Jhe, Chen Chih-Ping
Department of Materials Engineering, Ming Chi University of Technology, New Taipei City 243, Taiwan.
Department of Chemical Engineering, National Taiwan University of Science and Technology, Taipei City 106335, Taiwan.
Nanomaterials (Basel). 2022 Apr 18;12(8):1378. doi: 10.3390/nano12081378.
With the advancement of portable optoelectronics, organic semiconductors have been attracting attention for their use in the sensing of white and near-infrared light. Ideally, an organic photodiode (OPD) should simultaneously display high responsivity and a high response frequency. In this study we used a ternary blend strategy to prepare PM6: BTP-eC9: PCBM-based OPDs with a broad bandwidth (350-950 nm), ultrahigh responsivity, and a high response frequency. We monitored the dark currents of the OPDs prepared at various PCBM blend ratios and evaluated their blend film morphologies using optical microscopy, atomic force microscopy, and grazing-incidence wide-angle X-ray scattering. Optimization of the morphology and energy level alignment of the blend films resulted in the OPD prepared with a PM6:BTP-eC9:PCBM ternary blend weight ratio of 1:1.2:0.5 displaying an extremely low dark current (3.27 × 10 A cm) under reverse bias at -1 V, with an ultrahigh cut-off frequency (610 kHz, at 530 nm), high responsivity (0.59 A W, at -1.5 V), and high detectivity (1.10 × 10 Jones, under a reverse bias of -1 V at 860 nm). Furthermore, the rise and fall times of this OPD were rapid (114 and 110 ns), respectively.
随着便携式光电子学的发展,有机半导体因其在白光和近红外光传感中的应用而备受关注。理想情况下,有机光电二极管(OPD)应同时具有高响应度和高响应频率。在本研究中,我们采用三元共混策略制备了基于PM6:BTP-eC9:PCBM的OPD,其具有宽带宽(350 - 950 nm)、超高响应度和高响应频率。我们监测了在不同PCBM共混比例下制备的OPD的暗电流,并使用光学显微镜、原子力显微镜和掠入射广角X射线散射评估了它们的共混膜形态。共混膜形态和能级排列的优化使得以1:1.2:0.5的PM6:BTP-eC9:PCBM三元共混重量比制备的OPD在-1 V反向偏压下显示出极低的暗电流(3.27×10 A cm),具有超高截止频率(在530 nm处为610 kHz)、高响应度(在-1.5 V时为0.59 A W)和高探测率(在860 nm处-1 V反向偏压下为1.10×10 Jones)。此外,该OPD的上升和下降时间分别很快(114和110 ns)。