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在热稳定非晶态聚合物中保留聚集诱导发光活性荧光团的高效发光特性

Preserving High-Efficiency Luminescence Characteristics of an Aggregation-Induced Emission-Active Fluorophore in Thermostable Amorphous Polymers.

作者信息

Zhou Zhuxin, Long Yubo, Chen Xiaojie, Yang Tingting, Zhao Juan, Meng Yue, Chi Zhenguo, Liu Siwei, Chen Xudong, Aldred Matthew P, Xu Jiarui, Zhang Yi

机构信息

PCFM Lab, GD HPPC Lab, Guangdong Engineering Technology Research Centre for High-performance Organic and Polymer Photoelectric Functional Films, State Key Laboratory of Optoelectronic Materials and Technologies, School of Chemistry, Sun Yat-sen University, Guangzhou 510275, China.

Shenzhen Yanyi New Materials Co., Ltd., Shenzhen 518110, China.

出版信息

ACS Appl Mater Interfaces. 2020 Jul 29;12(30):34198-34207. doi: 10.1021/acsami.0c08480. Epub 2020 Jul 19.

DOI:10.1021/acsami.0c08480
PMID:32594733
Abstract

Luminophores usually suffer from luminescent quenching when introduced into a polymer backbone or side chain, which leads to the inefficient luminescence or even no luminescence of the polymer. In this work, alicyclic imide rings were found to be capable of balancing the donor-acceptor properties between the rigid spacer and the aggregation-induced emission-active fluorophore in light-emitting polymers. Along with the nonplanar and rigid emitter, the suppressed intramolecular charge-transfer effect and interchain disturbance can efficiently preserve the luminescence characteristics of the active center, resulting in high solid-state photoluminescence quantum yields of up to 89%. The amorphous polyimides exhibit excellent thermal properties, such as high glass transition temperature () values (398 °C) and high thermal decomposition temperature () values (538 °C). As far as we know, these luminescent polymer materials are of excellent heat resistance with the highest luminescence efficiency reported. The results have significant impact for the precise prediction of the optical properties of light-emitting polymers by appropriate monomer design, providing controllable ways for synthesizing high thermal stability polymeric materials with efficient fluorescence properties.

摘要

当发光团被引入聚合物主链或侧链时,通常会遭受发光猝灭,这会导致聚合物发光效率低下甚至不发光。在这项工作中,发现脂环族酰亚胺环能够平衡发光聚合物中刚性间隔基与聚集诱导发光活性荧光团之间的供体-受体性质。与非平面且刚性的发射体一起,受抑制的分子内电荷转移效应和链间干扰能够有效地保留活性中心的发光特性,从而产生高达89%的高固态光致发光量子产率。无定形聚酰亚胺表现出优异的热性能,如高玻璃化转变温度()值(398℃)和高热分解温度()值(538℃)。据我们所知,这些发光聚合物材料具有优异的耐热性,且发光效率是已报道的最高值。这些结果对于通过适当的单体设计精确预测发光聚合物的光学性质具有重要影响,为合成具有高效荧光性质的高热稳定性聚合物材料提供了可控方法。

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