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用于高性能本征可拉伸聚合物发光二极管的自组装三维穿透纳米网络

A Self-Assembled 3D Penetrating Nanonetwork for High-Performance Intrinsically Stretchable Polymer Light-Emitting Diodes.

作者信息

Liu Yanwei, Zhu Mingliang, Sun Jianzhe, Shi Wenkang, Zhao Zhiyuan, Wei Xiaofang, Huang Xin, Guo Yunlong, Liu Yunqi

机构信息

Beijing National Laboratory for Molecular Sciences, Chinese Academy of Sciences, Beijing, 100190, P. R. China.

University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.

出版信息

Adv Mater. 2022 Jul;34(27):e2201844. doi: 10.1002/adma.202201844. Epub 2022 May 31.

DOI:10.1002/adma.202201844
PMID:35488389
Abstract

The emergence of wearable technology can significantly benefit from electronic displays fabricated using intrinsically stretchable (is-) materials. Typically, an improvement in the stretchability of conventional light-emitting polymers is accompanied by a decrease in charge transportability, thus resulting in a significant decrease in device efficiency. In this study, a self-assembled 3D penetrating nanonetwork is developed to achieve increased stretchability and mobility simultaneously, based on high-molecular-weight phenylenevinylene (L-SY-PPV) and polyacrylonitrile (PAN). The mobility of L-SY-PPV/PAN increases by 5-6 times and the stretchability increases from 20% (pristine L-SY-PPV film) to 100%. A high current efficiency (CE) of 8.13 cd A is observed in polymer light-emitting diodes (PLEDs) fabricated using 40% stretched L-SY-PPV/PAN. Furthermore, using a polyethyleneimine ethoxylated (PEIE), an 1,10-phenanthroline monohydrate (pBphen), and a reduced Triton X-100 (TR) chelated Zn-based is- electron-injection layer of Zn-PEIE-pBphen-TR, an is-PLED is realized with a turn-on voltage of 6.5 V and a high CE of 2.35 cd A . These results demonstrate the effectiveness of using the self-assembled 3D penetrating nanonetwork for the fabrication of is-PLEDs.

摘要

可穿戴技术的出现能够从使用本征可拉伸(is-)材料制造的电子显示器中显著受益。通常,传统发光聚合物拉伸性的提高伴随着电荷传输性的降低,从而导致器件效率大幅下降。在本研究中,基于高分子量亚苯基乙烯基(L-SY-PPV)和聚丙烯腈(PAN),开发了一种自组装三维穿透纳米网络,以同时实现拉伸性和迁移率的提高。L-SY-PPV/PAN的迁移率提高了5至6倍,拉伸性从20%(原始L-SY-PPV薄膜)提高到100%。在使用40%拉伸的L-SY-PPV/PAN制造的聚合物发光二极管(PLED)中观察到8.13 cd A的高电流效率(CE)。此外,使用聚乙烯亚胺乙氧基化(PEIE)、一水合1,10-菲咯啉(pBphen)和还原的 Triton X-100(TR)螯合的基于锌的本征电子注入层Zn-PEIE-pBphen-TR,实现了一种本征PLED,其开启电压为6.5 V,高CE为2.35 cd A。这些结果证明了使用自组装三维穿透纳米网络制造本征PLED的有效性。

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