Dresden Integrated Center for Applied Physics and Photonic Materials (IAPP) and Institute for Applied Physics, Technische Universität Dresden, Dresden, 01187, Germany.
Institut de Ciència de Materials de Barcelona (ICMAB-CSIC), Campus de la UAB, Bellaterra, 08193, Spain.
Adv Mater. 2017 Sep;29(33). doi: 10.1002/adma.201702184. Epub 2017 Jul 4.
Spectroscopic photodetection is a powerful tool in disciplines such as medical diagnosis, industrial process monitoring, or agriculture. However, its application in novel fields, including wearable and biointegrated electronics, is hampered by the use of bulky dispersive optics. Here, solution-processed organic donor-acceptor blends are employed in a resonant optical cavity device architecture for wavelength-tunable photodetection. While conventional photodetectors respond to above-gap excitation, the cavity device exploits weak subgap absorption of intermolecular charge-transfer states of the intercalating poly[2,5-bis(3-tetradecylthiophen-2-yl)thieno[3,2-b]thiophene] (PBTTT):[6,6]-phenyl-C61-butyric acid methyl ester (PCBM) bimolecular crystal. This enables a highly wavelength selective, near-infrared photoresponse with a spectral resolution down to 14 nm, as well as dark currents and detectivities comparable with commercial inorganic photodetectors. Based on this concept, a miniaturized spectrophotometer, comprising an array of narrowband cavity photodetectors, is fabricated by using a blade-coated PBTTT:PCBM thin film with a thickness gradient. As an application example, a measurement of the transmittance spectrum of water by this device is demonstrated.
光谱光电探测在医学诊断、工业过程监测或农业等领域是一种强大的工具。然而,其在新型领域(包括可穿戴和生物集成电子学)的应用受到使用笨重的色散光学器件的限制。在这里,采用溶液处理的有机给体-受体共混物在共振光学腔器件结构中用于波长可调谐光电探测。虽然传统的光电探测器响应于带隙以上的激发,但腔器件利用插入聚[2,5-双(3-十四烷基噻吩-2-基)噻吩[3,2-b]噻吩](PBTTT):[6,6]-苯基-C61-丁酸甲酯(PCBM)双分子晶体的分子间电荷转移态的弱亚带隙吸收。这使得能够实现高度波长选择性的近红外光响应,光谱分辨率低至 14nm,以及与商业无机光电探测器相当的暗电流和探测率。基于这一概念,通过使用具有厚度梯度的刀片涂布 PBTTT:PCBM 薄膜,制造了包含窄带腔光电探测器阵列的小型分光光度计。作为应用示例,通过该器件演示了对水的透射光谱的测量。