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用于具有阳光式白色发光的聚合物发光器件的超支化聚合物的合成与性能

Synthesis and properties of hyperbranched polymers for polymer light emitting devices with sunlight-style white emission.

作者信息

Wu Yuling, Wu Dongyu, Zhao Haocheng, Li Jie, Li Xuefeng, Wang Zhongqiang, Wang Hua, Zhu Furong, Xu Bingshe

机构信息

Key Laboratory of Interface Science and Engineering in Advanced Materials, Taiyuan University of Technology Taiyuan 030024 China

Department of Physics, Institute of Advanced Materials, and Institute of Research and Continuing Education (Shenzhen), Hong Kong Baptist University Kowloon Tong Hong Kong P. R. China

出版信息

RSC Adv. 2019 Jul 17;9(39):22176-22184. doi: 10.1039/c9ra03307f.

Abstract

A new series of hyperbranched polymers consisting of fluorene--carbazole as the branches and the three-dimensional-structured spiro[3.3]heptane-2,6-dispirofluorene (SDF) as the core were designed and synthesized by one-pot Suzuki coupling polycondensation. A phosphor group with broad full width at half maximum (FWHM) bis(1-phenyl-isoquinoline)(acetylacetonato)iridium(iii) (Ir(Brpiq)acac, 0.08 mol%) as the red-light emitting unit and bis(2-(4-bromophenyl)-1-[6-(9-carbazolyl)hexyl]-imidazole)(2-(5-(4-fluorinated phenyl)-1,3,4-triazole)pyridine)iridium(iii) ((CzhBrPI)Ir(fpptz)) as the green-light emitting unit were introduced into the backbones to obtain sunlight-style white-light emission by adjusting the feeding ratios of (CzhBrPI)Ir(fpptz) (0.08 to 0.32 mol%). The results indicate the synthesized polymers show high thermal stabilities and good amorphous film morphology because of the hyperbranched structures. Besides, the lowest unoccupied molecular orbital (LUMO) levels of polymers were reduced and the electron injection was improved because of excellent electron-transporting ability of the triazole unit in the green group. The hyperbranched structures can effectively suppress the polymers' chain distortion and aggregation, and promote the incomplete Förster resonance energy transfer (FRET) efficiency from fluorene--carbazole segments to Ir complex units. As a result, the devices with hyperbranched polymer light-emitting layers realize white light emission, and the optimized device also exhibits good electroluminescent (EL) performance with Commission Internationale de l'Eclairage (CIE) coordinates at (0.32, 0.31), a maximum luminance of 9054 cd m, a maximum current efficiency of 3.59 cd A and a maximum Color Rendering Index (CRI) of 91. The hyperbranched polymers based on fluorene--carbazole branches and a SDF core and high-efficiency phosphor groups with broad full width at half maximum are attractive candidates for sunlight-style white polymer light-emitting device.

摘要

通过一锅法铃木偶联缩聚反应,设计并合成了一系列新型超支化聚合物,该聚合物以芴 - 咔唑为支链,三维结构的螺[3.3]庚烷 - 2,6 - 二螺芴(SDF)为核心。将具有宽半高宽(FWHM)的磷光基团双(1 - 苯基 - 异喹啉)(乙酰丙酮)铱(III)(Ir(Brpiq)acac,0.08 mol%)作为红光发射单元,以及双(2 - (4 - 溴苯基) - 1 - [6 - (9 - 咔唑基)己基] - 咪唑)(2 - (5 - (4 - 氟苯基) - 1,3,4 - 三唑)吡啶)铱(III)((CzhBrPI)Ir(fpptz))作为绿光发射单元引入主链中,通过调节(CzhBrPI)Ir(fpptz)的进料比例(0.08至0.32 mol%)来实现太阳光式白光发射。结果表明,由于超支化结构,合成的聚合物表现出高的热稳定性和良好的非晶膜形态。此外,由于绿色基团中三唑单元具有优异的电子传输能力,聚合物的最低未占据分子轨道(LUMO)能级降低,电子注入得到改善。超支化结构可以有效地抑制聚合物的链扭曲和聚集,并提高从芴 - 咔唑链段到Ir配合物单元的不完全福斯特共振能量转移(FRET)效率。结果,具有超支化聚合物发光层的器件实现了白光发射,优化后的器件还表现出良好的电致发光(EL)性能,国际照明委员会(CIE)坐标为(0.32, 0.31),最大亮度为9054 cd m,最大电流效率为3.59 cd A,最大显色指数(CRI)为91。基于芴 - 咔唑支链和SDF核心以及具有宽半高宽的高效磷光基团的超支化聚合物是太阳光式白色聚合物发光器件的有吸引力的候选材料。

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