Park Song Yi, Labanti Chiara, Pacalaj Richard A, Lee Tack Ho, Dong Yifan, Chin Yi-Chun, Luke Joel, Ryu Gihan, Minami Daiki, Yun Sungyoung, Park Jeong-Il, Fang Feifei, Park Kyung-Bae, Durrant James R, Kim Ji-Seon
Department of Physics and Centre for Processable Electronics, Imperial College London, London, SW7 2AZ, UK.
Department of Chemistry and Centre for Processable Electronics, Imperial College London, White City Campus, London, W12 0BZ, UK.
Adv Mater. 2023 Dec;35(49):e2306655. doi: 10.1002/adma.202306655. Epub 2023 Oct 27.
A bulk-heterojunction (BHJ) blend is commonly used as the photoactive layer in organic photodetectors (OPDs) to utilize the donor (D)/acceptor (A) interfacial energetic offset for exciton dissociation. However, this strategy often complicates optimization procedures, raising serious concerns over device processability, reproducibility, and stability. Herein, highly efficient OPDs fabricated with single-component organic semiconductors are demonstrated via solution-processing. The non-fullerene acceptors (NFAs) with strong intrinsic D/A character are used as the photoactive layer, where the emissive intermolecular charge transfer excitonic (CTE) states are formed within <1 ps, and efficient photocurrent generation is achieved via strong quenching of these CTE states by reverse bias. Y6 and IT-4F-based OPDs show excellent OPD performances, low dark current density (≈10 A cm ), high responsivity (≥0.15 A W ), high specific detectivity (>10 Jones), and fast photo-response time (<10 µs), comparable to the state-of-the-art BHJ OPDs. Together with strong CTE state quenching by electric field, these excellent OPD performances are also attributed to the high quadrupole moments of NFA molecules, which can lead to large interfacial energetic offset for efficient CTE dissociation. This work opens a new way to realize efficient OPDs using single-component systems via solution-processing and provides important molecular design rules.
体相异质结(BHJ)共混物通常用作有机光电探测器(OPD)的光活性层,以利用供体(D)/受体(A)界面的能量偏移来实现激子解离。然而,这种策略常常使优化过程变得复杂,引发了对器件可加工性、再现性和稳定性的严重担忧。在此,通过溶液处理展示了用单组分有机半导体制造的高效OPD。具有强本征D/A特性的非富勒烯受体(NFA)被用作光活性层,其中在<1 ps内形成发射性分子间电荷转移激子(CTE)态,并通过反向偏压对这些CTE态的强烈猝灭实现高效光电流产生。基于Y6和IT-4F的OPD表现出优异的OPD性能、低暗电流密度(≈10 A cm)、高响应度(≥0.15 A W)、高比探测率(>10 Jones)和快速光响应时间(<10 µs),与最先进的BHJ OPD相当。除了电场对CTE态的强烈猝灭外,这些优异的OPD性能还归因于NFA分子的高四极矩,这可导致大的界面能量偏移以实现高效的CTE解离。这项工作开辟了一条通过溶液处理利用单组分系统实现高效OPD的新途径,并提供了重要的分子设计规则。