Wang Yazhong, Kublitski Jonas, Xing Shen, Dollinger Felix, Spoltore Donato, Benduhn Johannes, Leo Karl
Dresden Integrated Center for Applied Physics and Photonic Materials (IAPP) and Institute for Applied Physics, Technische Universität Dresden, Nöthnitzer Str. 61, 01187 Dresden, Germany.
Mater Horiz. 2022 Jan 4;9(1):220-251. doi: 10.1039/d1mh01215k.
Omnipresent quality monitoring in food products, blood-oxygen measurement in lightweight conformal wrist bands, or data-driven automated industrial production: Innovation in many fields is being empowered by sensor technology. Specifically, organic photodetectors (OPDs) promise great advances due to their beneficial properties and low-cost production. Recent research has led to rapid improvement in all performance parameters of OPDs, which are now on-par or better than their inorganic counterparts, such as silicon or indium gallium arsenide photodetectors, in several aspects. In particular, it is possible to directly design OPDs for specific wavelengths. This makes expensive and bulky optical filters obsolete and allows for miniature detector devices. In this review, recent progress of such narrowband OPDs is systematically summarized covering all aspects from narrow-photo-absorbing materials to device architecture engineering. The recent challenges for narrowband OPDs, like achieving high responsivity, low dark current, high response speed, and good dynamic range are carefully addressed. Finally, application demonstrations covering broadband and narrowband OPDs are discussed. Importantly, several exciting research perspectives, which will stimulate further research on organic-semiconductor-based photodetectors, are pointed out at the very end of this review.
食品中无处不在的质量监测、轻便贴合式腕带中的血氧测量,或是数据驱动的自动化工业生产:传感器技术正在推动许多领域的创新。具体而言,有机光电探测器(OPD)因其有益特性和低成本生产而有望取得重大进展。近期的研究使OPD的所有性能参数都得到了快速提升,目前在几个方面已与无机同类产品(如硅或砷化铟镓光电探测器)相当甚至更优。特别是,可以直接针对特定波长设计OPD。这使得昂贵且笨重的光学滤波器过时,并促成了微型探测器设备的出现。在本综述中,系统地总结了此类窄带OPD的最新进展,涵盖了从窄光吸收材料到器件架构工程的各个方面。仔细探讨了窄带OPD近期面临的挑战,如实现高响应度、低暗电流、高响应速度和良好的动态范围。最后,讨论了涵盖宽带和窄带OPD的应用演示。重要的是,在本综述结尾指出了几个令人兴奋的研究方向,这将激发对基于有机半导体的光电探测器的进一步研究。