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具有机械坚固的氧化锌纳米颗粒薄膜的柔性有机光电探测器。

Flexible Organic Photodetectors with Mechanically Robust Zinc Oxide Nanoparticle Thin Films.

作者信息

Byeon Huikyeong, Kim Boyun, Hwang Hyejee, Kim Minji, Yoo Hyeonjin, Song Hyebin, Lee Seoung Ho, Lee Byoung Hoon

机构信息

Department of Chemical Engineering and Materials Science, Graduate Program in System Health Science and Engineering, Ewha Womans University, Seoul 03760, Republic of Korea.

Department of Chemistry, Daegu University, Gyeongsan 38453, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2023 Mar 1;15(8):10926-10935. doi: 10.1021/acsami.3c00947. Epub 2023 Feb 16.

Abstract

Zinc oxide nanoparticle (ZnO-NP) thin films have been intensively used as electron transport layers (ETLs) in organic optoelectronic devices, but their moderate mechanical flexibility hinders their application to flexible electronic devices. This study reveals that the multivalent interaction between ZnO-NPs and multicharged conjugated electrolytes, such as diphenylfluorene pyridinium bromide derivative (DFPBr-6), can significantly improve the mechanical flexibility of ZnO-NP thin films. Intermixing ZnO-NPs and DFPBr-6 facilitates the coordination between bromide anions (from the DFPBr-6) and zinc cations on ZnO-NP surfaces, forming Zn-Br bonds. Different from a conventional electrolyte (e.g., KBr), DFPBr-6 with six pyridinium ionic side chains holds the Br-chelated ZnO-NPs adjacent to DFP through Zn-Br-N bonds. Consequently, ZnO-NP:DFPBr-6 thin films exhibit improved mechanical flexibility with a critical bending radius as low as 1.5 mm under tensile bending conditions. Flexible organic photodetectors with ZnO-NP:DFPBr-6 thin films as ETLs demonstrate reliable device performances with high (0.34 A/W) and * (3.03 × 10 Jones) even after 1000 times repetitive bending at a bending radius of 4.0 mm, whereas devices with ZnO-NP and ZnO-NP:KBr ETLs yield >85% reduction in and * under the same bending condition.

摘要

氧化锌纳米颗粒(ZnO-NP)薄膜已被广泛用作有机光电器件中的电子传输层(ETL),但其适度的机械柔韧性阻碍了它们在柔性电子器件中的应用。本研究表明,ZnO-NPs与多电荷共轭电解质(如二苯基芴吡啶溴化物衍生物(DFPBr-6))之间的多价相互作用可显著提高ZnO-NP薄膜的机械柔韧性。将ZnO-NPs与DFPBr-6混合有助于溴阴离子(来自DFPBr-6)与ZnO-NP表面的锌阳离子之间的配位,形成Zn-Br键。与传统电解质(如KBr)不同,具有六个吡啶鎓离子侧链的DFPBr-6通过Zn-Br-N键使与Br螯合的ZnO-NPs与DFP相邻。因此,ZnO-NP:DFPBr-6薄膜在拉伸弯曲条件下表现出改善的机械柔韧性,临界弯曲半径低至1.5 mm。以ZnO-NP:DFPBr-6薄膜作为ETL的柔性有机光电探测器即使在4.0 mm弯曲半径下进行1000次重复弯曲后仍具有可靠的器件性能,高光电流响应度(0.34 A/W)和比探测率(3.03×10 Jones),而具有ZnO-NP和ZnO-NP:KBr ETL的器件在相同弯曲条件下光电流响应度和比探测率降低>85%。

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