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掺杂补偿实现用于图像传感的高探测率红外有机光电二极管。

Doping Compensation Enables High-Detectivity Infrared Organic Photodiodes for Image Sensing.

作者信息

Song Yu, Zhong Zhiming, He Penghui, Yu Gang, Xue Qifan, Lan Linfeng, Huang Fei

机构信息

Institute of Polymer Optoelectronic Materials and Devices, State Key Laboratory of Luminescent Materials and Devices, South China University of Technology, Guangzhou, 510640, China.

出版信息

Adv Mater. 2022 Jul;34(29):e2201827. doi: 10.1002/adma.202201827. Epub 2022 Jun 8.

Abstract

Infrared organic photodiodes have gained increasing attention due to their great application potentials in night vision, optical communication, and all-weather imaging. However, the commonly occurring high dark current and low detectivity impede infrared photodetectors from portable applications at room temperature. Herein, an efficient and generic doping compensation strategy is developed to improve the detectivity of infrared organic photodiodes. A series of n-type organic semiconductors is investigated, and it is found that doping compensation strategy not only reduces the trap density of states and dark currents, but also restrains the nonradiative recombination with improved charge transport and collection. As a result, an ultralow noise spectral density of 8 × 10 A Hz as well as a high specific detectivity over 10 Jones in 780-1070 nm is achieved at room temperature. More importantly, the high-performance infrared organic photodiodes can be successfully applied in high-pixel-density image arrays without patterning sensing layers. These findings provide important compensation design insights that will be crucial to further improve the performance of infrared organic photodiodes in the future.

摘要

红外有机光电二极管因其在夜视、光通信和全天候成像方面的巨大应用潜力而受到越来越多的关注。然而,常见的高暗电流和低探测率阻碍了红外光电探测器在室温下的便携式应用。在此,开发了一种高效通用的掺杂补偿策略来提高红外有机光电二极管的探测率。研究了一系列n型有机半导体,发现掺杂补偿策略不仅降低了陷阱态密度和暗电流,还通过改善电荷传输和收集抑制了非辐射复合。结果,在室温下实现了8×10 A Hz的超低噪声谱密度以及780 - 1070 nm范围内超过10 Jones的高比探测率。更重要的是,高性能红外有机光电二极管可以成功应用于无需图案化传感层的高像素密度图像阵列。这些发现提供了重要的补偿设计见解,对未来进一步提高红外有机光电二极管的性能至关重要。

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