探测器
光电探测器
动态范围
光电子学
光伏系统
光电流
材料科学
宽动态范围
光强度
光电导性
灵敏度(控制系统)
光学
物理
电子工程
电气工程
工程类
作者
Xin Hu,Ning Li,Mingyang Ren,Yifan Ji,Hongmei Guo,Qian Chen,Xiubao Sui
标识
DOI:10.1002/advs.202506499
摘要
Abstract Conventional detectors usually operate in one detection mode, namely photovoltaic mode, photoconductive mode, or photomultiplication mode, etc., which may have limitations such as insufficient sensitivity and limited dynamic range for applications. In this study, a photovoltaic/photomultiplication dual‐mode organic photodetector is developed by integrating two different organic bulk heterojunctions (BHJs), one introduces the photovoltaic effect, and the other triggers photomultiplication charge generation in the stacked device at different voltage polarities. The combination of the two operation modes largely extends the dynamic range of detectors, even superior to that of a commercial silicon detector. The ultra‐low noise level of the photovoltaic mode enables it to detect faint light with exceptional sensitivity, while the photomultiplication mode can handle a significantly large saturation photocurrent, allowing for the precise detection of high‐intensity signals. A dynamic range of 225 dB is achieved by precisely controlling the operation conditions of the dual‐mode detector, which surpasses the dynamic range of 140 dB of a commercial silicon detector. The detector can, as a result, precisely detect light signals (800 nm) in the range of 10 −10 –10 W cm −2 . This study demonstrates the versatility of organic semiconductors in designing multi‐functional and high‐performing photodetectors for practical applications.
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