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Photomultiplication-Type Organic Photodetectors with High EQE-Bandwidth Product by Introducing a Perovskite Quantum Dot Interlayer
Authors:Minyoung Jeong  Se Gyo Han  Woong Sung  Seunghyun Kim  Jiwoo Min  Mi Kyong Kim  Wookjin Choi  Hansol Lee  Dongki Lee  Min Kim  Kilwon Cho
Institution:1. Department of Chemical Engineering, Pohang University of Science and Technology, Pohang, 37673 Republic of Korea;2. Graduate School of Integrated Energy-AI, Jeonbuk National University, Jeonju, 54896 Republic of Korea;3. Graduate School of Engineering, Division of Molecular Engineering Program, Kyoto University, Inuyama, 606-8501 Japan;4. Department of Chemical and Biological Engineering, Gachon University, Seongnam, 13120 Republic of Korea;5. Department of Nanotechnology and Advanced Materials Engineering, Sejong University, Seoul, 05006 Republic of Korea
Abstract:A photomultiplication (PM)-type organic photodetector (OPD) that exploits the ionic motion in CsPbI3 perovskite quantum dots (QDs) is demonstrated. The device uses a QD monolayer as a PM-inducing interlayer and a donor–acceptor bulk heterojunction (BHJ) layer as a photoactive layer. When the device is illuminated, negative ions in the CsPbI3 QD migrate and accumulate near the interface between the QDs and the electrode; these processes induce hole injection from the electrode and yield the PM phenomenon with an external quantum efficiency (EQE) >2000% at a 3 V applied bias. It is confirmed that the ionic motion of the CsPbI3 QDs can induce a shift in the work function of the QD/electrode interface and that the dynamics of ionic motion determines the response speed of the device. The PM OPD showed a large EQE-bandwidth product >106 Hz with a −3 dB frequency of 125 kHz at 3 V, which is one of the highest response speeds reported for a PM OPD. The PM-inducing strategy that exploits ionic motion of the interlayer is a potential approach to achieving high-efficiency PM OPDs.
Keywords:ion migration  organic photodetectors  perovskite quantum dots  photomultiplication
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