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通过锡离子螯合聚合物实现的界面工程来稳定非富勒烯有机光电二极管。

Stabilizing Non-Fullerene Organic Photodiodes through Interface Engineering Enabled by a Tin Ion-Chelated Polymer.

作者信息

Xiao Jianhua, Wang Yang, Yuan Liu, Long Yin, Jiang Zhi, Liu Qingxia, Gu Deen, Li Weizhi, Tai Huiling, Jiang Yadong

机构信息

State Key Laboratory of Electronic Thin Films and Integrated Devices, School of Optoelectronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu, 610054, China.

Innovative Center for Flexible Devices (iFLEX), School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore, 639798, Singapore.

出版信息

Adv Sci (Weinh). 2023 Oct;10(28):e2302976. doi: 10.1002/advs.202302976. Epub 2023 Aug 4.

Abstract

The recent emergence of non-fullerene acceptors (NFAs) has energized the field of organic photodiodes (OPDs) and made major breakthroughs in their critical photoelectric characteristics. Yet, stabilizing inverted NF-OPDs remains challenging because of the intrinsic degradation induced by improper interfaces. Herein, a tin ion-chelated polyethyleneimine ethoxylated (denoted as PEIE-Sn) is proposed as a generic cathode interfacial layer (CIL) of NF-OPDs. The chelation between tin ions and nitrogen/oxygen atoms in PEIE-Sn contributes to the interface compatibility with efficient NFAs. The PEIE-Sn can effectively endow the devices with optimized cascade alignment and reduced interface defects. Consequently, the PEIE-Sn-OPD exhibits properties of anti-environmental interference, suppressed dark current, and accelerated interfacial electron extraction and transmission. As a result, the unencapsulated PEIE-Sn-OPD delivers high specific detection and fast response speed and shows only slight attenuation in photoelectric performance after exposure to air, light, and heat. Its superior performance outperforms the incumbent typical counterparts (ZnO, SnO , and PEIE as the CILs) from metrics of both stability and photoelectric characteristics. This finding suggests a promising strategy for stabilizing NF-OPDs by designing appropriate interface layers.

摘要

最近非富勒烯受体(NFAs)的出现为有机光电二极管(OPDs)领域注入了活力,并在其关键光电特性方面取得了重大突破。然而,由于界面不当导致的内在降解,稳定倒置的NF-OPDs仍然具有挑战性。在此,提出了一种锡离子螯合的聚乙撑亚胺乙氧基化物(表示为PEIE-Sn)作为NF-OPDs的通用阴极界面层(CIL)。PEIE-Sn中锡离子与氮/氧原子之间的螯合有助于与高效NFAs的界面相容性。PEIE-Sn可以有效地赋予器件优化的级联排列并减少界面缺陷。因此,PEIE-Sn-OPD表现出抗环境干扰、抑制暗电流以及加速界面电子提取和传输的特性。结果,未封装的PEIE-Sn-OPD具有高比检测率和快速响应速度,并在暴露于空气、光和热后光电性能仅略有衰减。从稳定性和光电特性指标来看,其优异性能优于现有的典型对应物(以ZnO、SnO和PEIE作为CIL)。这一发现为通过设计合适的界面层来稳定NF-OPDs提供了一种有前景的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a064/10558641/822e1e30a10c/ADVS-10-2302976-g006.jpg

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