首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Improved electroluminescence efficiency of polyfluorenes by simultaneously incorporating dibenzothiophene-S,S-dioxide unit in main chain and oxadiazole moiety in side chain
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Improved electroluminescence efficiency of polyfluorenes by simultaneously incorporating dibenzothiophene-S,S-dioxide unit in main chain and oxadiazole moiety in side chain

机译:通过同时在主链中引入二苯并噻吩-S,S-二氧化物单元和在侧链中引入恶二唑部分来提高聚芴的电致发光效率

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摘要

A series of efficient and spectrally stable blue light-emitting polyfluorene derivatives containing 3,7- dibenzothiophene-S,S-dioxide (SO) unit in main chain and oxadiazole (OXD) moiety in the side chain were synthesized via Suzuki copolymerization. It was realized that the glass transition temperatures of the resulted copolymers PFSO-OXD increased gradually with the content of OXD, while the UV-vis absorption, photoluminescence spectra, as well as electrochemical properties were not significantly influenced by the molar ratio of OXD unit. Apparent solvatochromism of copolymers PFSO-OXD can be realized by varying polarity of solvents from toluene to dichloromethane. Light-emitting devices based on PFSO-OXD exhibited superior performances to those of PFSO and PF-OXD20 due to the more balanced charge carrier mobility of the devices. The electroluminescence spectra of all copolymers are independent with the current densities and thermal annealing. The best device performance was achieved based on PFSO-OXD20 with a maximal luminous efficiency of 4.9 cd A~(-1) with the Commission Internationale de L'Eclairage (CIE) coordinates of (0.16, 0.12). The results indicated that the strategy of concurrently incorporating SO and OXD unit into the main chain and side chain of polyfluorenes, respectively has great potential to achieve efficient blue light-emitting polymers.
机译:通过Suzuki共聚反应,合成了一系列高效且对光谱稳定的蓝色发光聚芴衍生物,在主链中包含3,7-二苯并噻吩-S,S-二氧化物(SO)单元,在侧链中包含恶二唑(OXD)部分。已经认识到,所得共聚物PFSO-OXD的玻璃化转变温度随着OXD的含量逐渐增加,而UV-vis吸收,光致发光光谱以及电化学性质不受OXD单元的摩尔比的显着影响。共聚物PFSO-OXD的明显溶剂变色现象可通过改变溶剂的极性(从甲苯到二氯甲烷)来实现。由于PFSO-OXD发光器件的载流子迁移更加平衡,因此其性能优于PFSO和PF-OXD20。所有共聚物的电致发光光谱与电流密度和热退火无关。基于PFSO-OXD20以4.9 cd A〜(-1)的最大发光效率和国际照明委员会(CIE)坐标(0.16,0.12)达到了最佳的设备性能。结果表明,同时将SO和OXD单元并入聚芴的主链和侧链的策略具有巨大的潜力,可以实现高效的发蓝光聚合物。

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