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手性非富勒烯受体富集体异质结实现高性能近红外圆偏振光探测。

Chiral Non-Fullerene Acceptor Enriched Bulk Heterojunctions Enable High-Performance Near-Infrared Circularly Polarized Light Detection.

机构信息

CAS Key Laboratory of Nanosystem and Hierarchical Fabrication, National Center for Nanoscience and Technology, Beijing, 100190, China.

School of Future Technology, University of Chinese Academy of Sciences (UCAS), Beijing, 100049, China.

出版信息

Small. 2022 Aug;18(31):e2202941. doi: 10.1002/smll.202202941. Epub 2022 Jul 9.

Abstract

Organic photodetectors that can sensitively convert near-infrared (NIR) circularly polarized light (CPL) into modulable electrical signals have promising applications in spectroscopy, imaging, and communications. However, the preparation of chiral NIR organic photodetectors with simultaneously high dissymmetry factor, responsivity, detectivity, and response speed is challenging. Here, direct CPL detectors based on the bulk heterojunctions (BHJs) of chiral BTP-4Cl non-fullerene acceptor with dilute achiral PM6 donor are constructed, which successfully address these issues. The chiral acceptor-enriched BHJs with a donor/acceptor ratio of 1/10 achieve an optimal trade-off between chiroptical properties and optoelectronic performance. The supramolecular chirality from the acceptor aggregates provides the BHJs with a true absorption dissymmetry factor (g ) of ±0.02 at 830 nm, the highest value among NIR-sensitive detectors, which endows the photodetector with a photocurrent dissymmetry factor (g ) of ±0.03. Impressively, the photodetector demonstrates an external quantum efficiency as high as 60%, a responsivity of 0.4 A W , a detectivity of 3 × 10 Jones (based on noise current), and a fast response speed on the microsecond scale with the -3 dB bandwidth over 7000 Hz in the NIR region. This study exhibits a promising strategy for building high-performing direct NIR CPL detectors by introducing supramolecular chirality into BHJs.

摘要

能够将近红外(NIR)圆偏振光(CPL)灵敏地转换为可调谐电信号的有机光电探测器在光谱学、成像和通信等领域具有广阔的应用前景。然而,制备具有同时具有高不对称因子、响应度、探测率和响应速度的手性近红外有机光电探测器仍然具有挑战性。在此,构建了基于手性 BTP-4Cl 非富勒烯受体与稀有的非手性 PM6 给体的体异质结(BHJ)的直接 CPL 探测器,成功地解决了这些问题。在施主/受主比为 1/10 的手性受主富 BHJ 中,手征光学性质和光电性能之间达到了最佳的权衡。来自受体聚集的超分子手征性赋予 BHJs 在 830nm 处的真实吸收不对称因子(g)为±0.02,这是在近红外敏感探测器中最高的值,这使光电探测器具有±0.03 的光电流不对称因子(g)。令人印象深刻的是,该光电探测器在近红外区域的 -3dB 带宽超过 7000Hz 时,具有高达 60%的外量子效率、0.4 A W 的响应度、3×10 琼斯(基于噪声电流)的探测率和微秒级的快速响应速度。这项研究通过将超分子手征性引入 BHJs,展示了构建高性能直接 NIR CPL 探测器的有前途的策略。

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