Department of Chemistry and Centre for Processable Electronics, Imperial College London, London, W12 0BZ, UK.
King Abdullah University of Science and Technology (KAUST), KAUST Solar Center (KSC), Thuwal, 23955, Saudi Arabia.
Small. 2022 Apr;18(15):e2200580. doi: 10.1002/smll.202200580. Epub 2022 Mar 4.
Recent efforts in the field of organic photodetectors (OPD) have been focused on extending broadband detection into the near-infrared (NIR) region. Here, two blends of an ultralow bandgap push-pull polymer TQ-T combined with state-of-the-art non-fullerene acceptors, IEICO-4F and Y6, are compared to obtain OPDs for sensing in the NIR beyond 1100 nm, which is the cut off for benchmark Si photodiodes. It is observed that the TQ-T:IEICO-4F device has a superior IR responsivity (0.03 AW at 1200 nm and -2 V bias) and can detect infrared light up to 1800 nm, while the TQ-T:Y6 blend shows a lower responsivity of 0.01 AW . Device physics analyses are tied with spectroscopic and morphological studies to link the superior performance of TQ-T:IEICO-4F OPD to its faster charge separation as well as more favorable donor-acceptor domains mixing. In the polymer blend with Y6, the formation of large agglomerates that exceed the exciton diffusion length, which leads to high charge recombination, is observed. An application of these devices as biometric sensors for real-time heart rate monitoring via photoplethysmography, utilizing infrared light, is demonstrated.
近年来,有机光电探测器(OPD)领域的研究重点集中在将宽带检测扩展到近红外(NIR)区域。在这里,将两种超低带隙推挽聚合物 TQ-T 与最先进的非富勒烯受体 IEICO-4F 和 Y6 的混合物进行比较,以获得可用于感测超过 1100nm 的近红外光的 OPD,这是基准硅光电二极管的截止波长。结果表明,TQ-T:IEICO-4F 器件具有更高的 IR 响应率(在 1200nm 和-2V 偏压下为 0.03 AW),可以检测到 1800nm 以上的红外光,而 TQ-T:Y6 混合物的响应率较低,为 0.01 AW。器件物理分析与光谱和形态研究相结合,将 TQ-T:IEICO-4F OPD 的优异性能与其更快的电荷分离以及更有利的给体-受体畴混合联系起来。在与 Y6 的聚合物混合物中,观察到形成了超过激子扩散长度的大聚集体,这导致了高电荷复合。通过光电容积描记术利用红外光演示了这些器件作为实时心率监测生物识别传感器的应用。