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高探测率全聚合物光电二极管助力智能生命体征监测与计算成像,可与硅二极管相媲美。

High-Detectivity All-Polymer Photodiode Empowers Smart Vitality Surveillance and Computational Imaging Rivaling Silicon Diodes.

作者信息

Chandran Hrisheekesh Thachoth, Ma Ruijie, Xu Zhihan, Veetil Jipsa Chelora, Luo Yongmin, Dela Peña Top Archie, Gunasekaran Iyappan, Mahadevan Sudhi, Liu Kuan, Xiao Yin, Xia Hao, Wu Jiaying, Li Mingjie, Tsang Sai-Wing, Yu Xinge, Chen Wen, Li Gang

机构信息

Department of Electrical and Electronic Engineering, Research Institute for Smart Energy (RISE), Photonics Research Institute (PRI), The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong SAR, P. R. China.

Department of Electrical and Electronic Engineering, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong SAR, P. R. China.

出版信息

Adv Mater. 2024 Sep;36(38):e2407271. doi: 10.1002/adma.202407271. Epub 2024 Jul 30.

DOI:10.1002/adma.202407271
PMID:39081083
Abstract

Near-infrared (NIR) organic photodetectors (OPDs), particularly all-polymer-based ones, hold substantial commercial promise in the healthcare and imaging sectors. However, the process of optimizing their active layer composition to achieve highly competitive figures of merit lacks a clear direction and methodology. In this work, celebrity polymer acceptor PY-IT into a more NIR absorbing host system PBDB-T:PZF-V, to significantly enhance the photodetection competence, is introduced. The refined all-polymer ternary broadband photodetector demonstrates superior performance metrics, including experimentally measured noise current as low as 6 fA Hz, specific detectivity reaching 8 × 10 Jones, linear dynamic range (LDR) of 145 dB, and swift response speed surpassing 200 kHz, striking a fair balance between sensitivity and response speed. Comprehensive morphological and photophysical characterizations elucidate the mechanisms behind the observed performance enhancements in this study, which include reduced trap density, enhanced charge transport, diminished charge recombination, and balanced electron/hole mobilities. Moreover, the practical deployment potential of the proof-of-concept device in self-powered mode is demonstrated through their application in a machine learning-based cuffless blood pressure (BP) estimation system and in high-resolution computational imaging across complex environments, where they are found to quantitatively rival commercial silicon diodes.

摘要

近红外(NIR)有机光电探测器(OPD),尤其是全聚合物基的光电探测器,在医疗保健和成像领域具有巨大的商业前景。然而,优化其有源层组成以实现极具竞争力的品质因数的过程缺乏明确的方向和方法。在这项工作中,引入了明星聚合物受体PY-IT到一个更具近红外吸收能力的主体体系PBDB-T:PZF-V中,以显著提高光电探测能力。优化后的全聚合物三元宽带光电探测器展示了卓越的性能指标,包括实验测量的低至6 fA Hz的噪声电流、高达8×10琼斯的比探测率、145 dB的线性动态范围(LDR)以及超过200 kHz的快速响应速度,在灵敏度和响应速度之间达到了良好的平衡。全面的形态学和光物理表征阐明了本研究中观察到的性能增强背后的机制,包括降低陷阱密度、增强电荷传输、减少电荷复合以及平衡电子/空穴迁移率。此外,通过将概念验证器件应用于基于机器学习的无袖带血压(BP)估计系统以及复杂环境中的高分辨率计算成像,展示了其在自供电模式下的实际部署潜力,发现它们在定量方面可与商用硅二极管相媲美。

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