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用于高效无主体溶液处理OLED的发光卡宾-铜(I)-酰胺聚合物。

Luminescent carbene-copper(i)-amide polymers for efficient host-free solution-processed OLEDs.

作者信息

Tan Yao, Ying Ao, Xie Jianlong, Xie Guohua, Gong Shaolong

机构信息

College of Chemistry and Molecular Sciences, Hubei Key Laboratory on Organic and Polymeric Optoelectronic Materials, Wuhan University Wuhan 430072 China

出版信息

Chem Sci. 2024 Jun 17;15(29):11382-11390. doi: 10.1039/d4sc01865f. eCollection 2024 Jul 24.

Abstract

Luminescent metallopolymers have attracted broad interest in the fields of healthcare and organic electronics. However, polymeric emitters based on earth-abundant metal complexes are scarce. Here, two series of Cu(i) polymers, PMAC- and PCAAC- ( = 1-3) have been developed using two kinds of Cu(i)-based carbene-metal-amide (CMA) complexes as side-chain emitter units to combine with a nonconjugated polystyrene backbone. These Cu(i) polymers emit distinct thermally activated delayed fluorescence or dominant phosphorescence, inherited from the grafted Cu(i)-based CMA units. Particularly, the PMAC- polymers exhibit high photoluminescence quantum efficiencies of up to 0.78, short emission lifetimes of down to 0.66 μs, and fast radiative rates of up to 10 s in neat films. Thanks to the good encapsulation effect of the polystyrene backbone, these Cu(i) polymers not only demonstrate favorable moisture stability but also show significant aggregation-induced emission. The resultant host-free solution-processed organic light-emitting diodes (OLEDs) achieve outstanding electroluminescence performance with a record external quantum efficiency of 13.8% at a practical luminance of ∼100 nits, representing state-of-the-art device efficiency for metallopolymer-based OLEDs. This work not only presents the first example of CMA polymers but also provides the future direction of polymeric emitters from earth-abundant metal complexes for the OLED application.

摘要

发光金属聚合物在医疗保健和有机电子领域引起了广泛关注。然而,基于储量丰富的金属配合物的聚合物发光体却很稀少。在此,利用两种基于Cu(i)的卡宾-金属-酰胺(CMA)配合物作为侧链发光单元,与非共轭聚苯乙烯主链相结合,开发了两个系列的Cu(i)聚合物,即PMAC-和PCAAC-( = 1-3)。这些Cu(i)聚合物发出独特的热激活延迟荧光或占主导的磷光,这是从接枝的基于Cu(i)的CMA单元继承而来的。特别地,PMAC-聚合物在纯薄膜中表现出高达0.78的高光致发光量子效率、低至0.66 μs的短发射寿命以及高达10 s的快速辐射速率。由于聚苯乙烯主链具有良好的封装效果,这些Cu(i)聚合物不仅表现出良好的防潮稳定性,还表现出显著的聚集诱导发光。由此得到的无主体溶液处理有机发光二极管(OLED)在实际亮度约为100 nits时实现了出色的电致发光性能,外部量子效率达到创纪录的13.8%,代表了基于金属聚合物的OLED的当前最高器件效率。这项工作不仅展示了CMA聚合物的首个实例,还为用于OLED应用的储量丰富的金属配合物聚合物发光体提供了未来的发展方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/961e/11268500/0ba337c8457a/d4sc01865f-f1.jpg

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