光探测
光电子学
材料科学
光子上转换
量子点
红外线的
吸收(声学)
量子效率
光子
光电探测器
可见光谱
激子
载流子
等离子体子
热光电伏打
近红外光谱
互连
作者
Jin Li,Ke-Lei Zu,Changsheng Shi,Bin Xu,Jian Xu,Yin-Fen Ma,Ji-Xiong Zhao,Y Wang,Hai-Liang Long,Qi Zhan,Feng Qiu,Mei Leng,Yong-biao Zhao,Zheng‐Hong Lu
出处
期刊:ACS Photonics
[American Chemical Society]
日期:2026-02-12
卷期号:13 (5): 1456-1464
标识
DOI:10.1021/acsphotonics.5c02809
摘要
Infrared (IR)-to-visible upconversion devices integrate IR photodetection and visible light emission into a single device. Such devices selectively emit visible photons from regions irradiated by IR photons, enabling simplified and low-cost pixel-less imaging. Recently, the integration of colloidal quantum dots (CQDs)-based IR photodetection units with organic semiconductor–based visible emitters has attracted significant attention. These quantum dot organic upconversion devices (QOUDs) benefit from solution processability and tunable infrared absorption. However, their performance has so far been limited by inefficient coupling between the absorption and emission units as well as the relatively low efficiency of the photodetection layer. In this work, a high-performance QOUD is demonstrated by incorporating an improved interconnection layer (ICL) and introducing a photomultiplication (PM) mechanism. A photon-to-photon efficiency of 23% is achieved, which is 143 times higher than that of a gain-free device. The low-barrier interconnection is achieved by using an ultrathin MoO 3 ICL, which provides favorable energy level alignment. The turn-on voltage of the QOUD under infrared illumination was greatly reduced to 1.9 V. In addition, the PM effect originates from the absorption layer, where defect states trap photogenerated carriers and induce image-charge-assisted carrier injection from the electrode. The QOUD is further demonstrated for pixel-less IR imaging, combining low turn-on voltage with high PM and showing strong potential for practical infrared imaging applications.
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