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用于精确酒精浓度检测的光谱响应高达1600纳米的高效近红外有机光电探测器。

Efficient Near-Infrared Organic Photodetectors with Spectral Response up to 1600 nm for Accurate Alcohol Concentration Detection.

作者信息

Yu Xin, Lin Hui, He Zeyu, Du Xiaoyang, Chen Zhenhua, Yang Gang, Zheng Caijun, Tao Silu

机构信息

School of Optoelectronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu 610054, P. R. China.

Shanghai Synchrotron Facility (SSRF), Shanghai Advanced Research Institute, Chinese Academy of Sciences, Shanghai 201204, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2023 Apr 5;15(13):16918-16929. doi: 10.1021/acsami.2c22724. Epub 2023 Mar 22.

Abstract

The development of near-infrared organic photodetectors (NIR-OPDs) in 1000-1700 nm is essential for medical monitoring, food quality inspection, machine vision, and biomedical imaging. However, when solving the high dark current density () in bulk-heterojunction (BHJ) NIR-OPDs based on narrow-bandgap systems, it is often accompanied by photocurrent loss, which is a great challenge in achieving high-performance NIR-OPDs. Here, an ideal hybrid pseudo-PHJ (planar-heterojunction)/BHJ structure is proposed to overcome this challenge, which is introducing the N2200 layer between the cathode and BHJ. The introduction of the N2200 raises the external charge injection barrier and reduces the trap density, thus achieving significant suppression of (6.22 × 10 A cm at -0.2 V bias, about 2 orders of magnitude lower compared to the BHJ NIR-OPDs). Meanwhile, the hybrid structure combines the advantages of PHJ and BHJ, thus maintaining a high photocurrent, resulting in responsivity and detectivity of 18.71 mA W and 4.19 × 10 Jones, respectively, at 1400 nm at -0.2 V bias, which is superior to the performance of BHJ NIR-OPDs. And the hybrid structured NIR-OPDs are proven to rapidly quantify the alcohol content of mixtures to within 2% accuracy, which exhibits great potential for application in the food and pharmaceutical industries.

摘要

开发波长在1000 - 1700 nm的近红外有机光电探测器(NIR - OPD)对于医学监测、食品质量检测、机器视觉和生物医学成像至关重要。然而,在解决基于窄带隙系统的体异质结(BHJ)近红外有机光电探测器中的高暗电流密度()问题时,往往伴随着光电流损失,这是实现高性能近红外有机光电探测器的一大挑战。在此,提出了一种理想的混合伪平面异质结(PHJ)/体异质结(BHJ)结构来克服这一挑战,即在阴极和体异质结之间引入N2200层。N2200层的引入提高了外部电荷注入势垒并降低了陷阱密度,从而实现了对暗电流密度的显著抑制(在 - 0.2 V偏压下为6.22×10 A cm,与BHJ近红外有机光电探测器相比降低了约2个数量级)。同时,这种混合结构结合了平面异质结和体异质结的优点,因此保持了高光电流,在 - 0.2 V偏压下,1400 nm处的响应度和探测率分别为18.71 mA W和4.19×10 Jones,优于BHJ近红外有机光电探测器的性能。并且已证明这种混合结构的近红外有机光电探测器能够快速将混合物中的酒精含量定量到2%的精度范围内,在食品和制药行业具有巨大的应用潜力。

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