Liu Guanghong, Li Tengfei, Zhan Xiaowei, Wu Hongbin, Cao Yong
Institute of Polymer Optoelectronic Materials and Devices, State Key Laboratory of Luminescent Materials and Devices, South China University of Technology, Guangzhou 510640, P. R. China.
Department of Materials Science and Engineering, College of Engineering, Key Laboratory of Polymer Chemistry and Physics of Ministry of Education, Peking University, Beijing 100871, P. R China.
ACS Appl Mater Interfaces. 2020 Apr 15;12(15):17769-17775. doi: 10.1021/acsami.0c00191. Epub 2020 Mar 31.
Highly sensitive solution-processed organic photodetectors (OPDs) with a broadband response ranging from visible to near infrared (NIR) and excellent overall device performance are demonstrated. The OPDs were fabricated from a blend consisting of a wide-band gap polymer donor and a newly developed fused octacylic small-molecule electron acceptor with an acceptor-donor-acceptor structure, which shows relatively high and balanced hole/electron mobility and allows for a thicker photo-active layer (∼300 nm). In conjunction with the use of an optimized inverted device structure, the dark current density of the OPDs was suppressed to an ultralow level of (8.3 ± 5.5) × 10A cm at a bias of -1 V and the capability to direct weak light intensity is down to 0.24 pW cm; both are among the lowest reported values for OPDs. Owing to the low shot noise enabled by the inverted structure and the low thermal noise due to the high shunt resistance of the device, the obtained OPDs show a spectrally flat photoresponse in the range of 350-950 nm (UV-vis-NIR) and a maximal specific detectivity (*) of (2.1 ± 0.1) × 10 Jones at 800-900 nm, which are among the best results of NIR OPDs reported to date and represents a highly sensitive photodetector for weak optical signal detection. Besides, the OPDs show a wide bandwidth of 30 kHz, a fast temporal response time around 12 us ∼14 us, and a large linear dynamic range of 106 dB.
展示了具有从可见光到近红外(NIR)的宽带响应以及出色整体器件性能的高灵敏度溶液处理有机光电探测器(OPD)。这些OPD由宽带隙聚合物供体和新开发的具有受体-供体-受体结构的稠合八环小分子电子受体组成的混合物制成,该混合物显示出相对较高且平衡的空穴/电子迁移率,并允许形成较厚的光活性层(约300 nm)。结合使用优化的倒置器件结构,在-1 V偏压下,OPD的暗电流密度被抑制到超低水平(8.3±5.5)×10 A/cm²,并且探测弱光强度的能力低至0.24 pW/cm²;这两者都是OPD报道的最低值之一。由于倒置结构实现的低散粒噪声和器件高并联电阻导致的低热噪声,所获得的OPD在350 - 950 nm(紫外-可见-近红外)范围内显示出光谱平坦的光响应,并且在800 - 900 nm处的最大比探测率(*)为(2.1±0.1)×10 Jones,这是迄今为止报道的近红外OPD的最佳结果之一,代表了一种用于弱光信号检测的高灵敏度光电探测器。此外,OPD显示出30 kHz的宽带宽、约12 us至14 us的快速时间响应时间以及106 dB的大线性动态范围。