Atomic-level chemical reaction promoting external quantum efficiency of organic photomultiplication photodetector exceeding 108% for weak-light detection

暗电流 量子效率 响应度 欧姆接触 阳极 光电探测器 光电子学 材料科学 肖特基势垒 工作职能 阴极 肖特基二极管 分析化学(期刊) 化学 图层(电子) 电极 纳米技术 二极管 物理化学 色谱法
作者
Linlin Shi,Yizhi Zhu,Guohui Li,Ting Ji,Wenyan Wang,Ye Zhang,Yukun Wu,Yuying Hao,Kaiying Wang,Jun Yuan,Yingping Zou,Beng S. Ong,Furong Zhu,Yanxia Cui
出处
期刊:Science Bulletin [Elsevier]
卷期号:68 (9): 928-937
标识
DOI:10.1016/j.scib.2023.04.015
摘要

Low-cost, solution-processed photomultiplication organic photodetectors (PM-OPDs) with external quantum efficiency (EQE) above unity have attracted enormous attention. However, their weak-light detection is unpleasant because the anode Ohmic contact causes exacerbation in dark current. Here, we introduce atomic-level chemical reaction in PM-OPDs which can simultaneously suppress dark current and increase EQE via depositing a 0.8 nm thick Al2O3 by the atomic layer deposition. Suppression in dark current mainly originates from the built-in anode Schottky junction as a result of work function decrease of hole-transporting layer of which the chemical groups can react chemically with the bottom surface of Al2O3 layer at the atomic-level. Such strategy of suppressing dark current is not adverse to charge injection under illumination; instead, responsivity enhancement is realized because charge injection can shift from cathode to anode, of which the neighborhood possesses increased photogenerated carriers. Consequently, weak-light detection limit of the forwardly-biased PM-OPD with Al2O3 treatment reaches a remarkable level of 2.5 nW cm-2, while that of the reversely-biased control is 25 times inferior. Meanwhile, the PM-OPD yields a record high EQE and responsivity of 4.31 × 108% and 1.85 × 106 A W-1, respectively, outperforming all other polymer-based PM-OPDs.

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