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通过能量调制多光谱有机光电探测器实现透过光散射屏障的稳健成像。

Robust Imaging through Light-Scattering Barriers via Energetically Modulated Multispectral Organic Photodetectors.

作者信息

Oh Seunghyun, Jo Suyeon, Lee Ji Hyeon, Ko Hyun Woo, Kim Tae Hyuk, Seo Paul Hongsuck, Lee Gyeong Min, Shim Eun Soo, Ahn Hyungju, Jung Byung Ku, Oh Soong Ju, Park Donghee, Lee Kwang-Hoon, Yoon Seon Kyu, Chae Byeonguk, Lee Sanghyun, Lee Gyoung Yong, Jo Jea Woong, Lee Sae Youn, Park Min-Chul, Shim Jae Won

机构信息

School of Electrical Engineering, Korea University, Seoul, 02841, Republic of Korea.

Center for Quantum Technology, Post-Silicon Semiconductor Institute, Korea Institute of Science and Technology (KIST), Seoul, 02792, Republic of Korea.

出版信息

Adv Mater. 2025 Jul;37(28):e2503868. doi: 10.1002/adma.202503868. Epub 2025 Apr 24.

Abstract

Emerging technologies, such as biomedical imaging and autonomous driving, rely on low-noise near infrared (NIR) photodetectors. Organic photodetectors (OPDs) offer tremendous potential for these applications because of their seamless integration and NIR photosensing capabilities; however, their high noise levels have constrained widespread commercialization. Herein, the study demonstrates a bulk heterojunction (BHJ) NIR OPD featuring an ultralow noise current of 2.18 fA, enabled by a newly synthesized electron-blocking layer (EBL), ((2,7-dicyano-9H-fluorene-9,9-diyl)bis(propane-3,1-diyl))bis(phosphonic acid) (3PAFCN). Through diverse energetic modulative design strategies, 3PAFCN enables the OPD to achieve homogenous surface properties, an elevated interfacial energy barrier, and optimized BHJ morphology, culminating in a notable specific detectivity of 2.50 × 10 cm Hz W at 808 nm illumination under white-noise conditions. These EBL design principles are broadly applicable for various photoactive materials. Demonstrations in single-pixel imaging highlight the exceptional clarity of the 3PAFCN-based OPD in low-light and foggy environments, underscoring the potential of OPD technology for advanced imaging applications.

摘要

诸如生物医学成像和自动驾驶等新兴技术依赖于低噪声近红外(NIR)光电探测器。有机光电探测器(OPD)因其无缝集成和近红外光传感能力,在这些应用中具有巨大潜力;然而,其高噪声水平限制了广泛的商业化。在此,该研究展示了一种体异质结(BHJ)近红外OPD,其具有2.18 fA的超低噪声电流,这是由新合成的电子阻挡层(EBL),即((2,7-二氰基-9H-芴-9,9-二基)双(丙烷-3,1-二基))双(膦酸)(3PAFCN)实现的。通过多种能量调制设计策略,3PAFCN使OPD能够实现均匀的表面性质、提高的界面能垒和优化的BHJ形态,最终在白噪声条件下808 nm光照下实现了2.50×10 cm Hz W的显著比探测率。这些EBL设计原则广泛适用于各种光活性材料。单像素成像演示突出了基于3PAFCN的OPD在低光和雾天环境中的卓越清晰度,强调了OPD技术在先进成像应用中的潜力。

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