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首页> 外文期刊>Advanced Functional Materials >A Molecular Glass for Deep-Blue Organic Light-Emitting Diodes Comprising a 9,9'-Spirobifluorene Core and Peripheral Carbazole Groups
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A Molecular Glass for Deep-Blue Organic Light-Emitting Diodes Comprising a 9,9'-Spirobifluorene Core and Peripheral Carbazole Groups

机译:用于包含9,9'-螺二芴核心和外围咔唑基团的深蓝色有机发光二极管的分子玻璃

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摘要

Novel fluorene-based compounds, TCPC-6 and TCPC-4, with rigid central spirobifluorene cores and peripheral carbazole groups are synthesized using the Suzuki coupling reaction. The optical, electrochemical, and thermal properties of these compounds are characterized. The compounds show strong deep-blue emission both in solution and as thin films. Both TCPC-6 and TCPC-4 exhibit amorphous morphologies in the solid state with high glass transition temperatures (T_g) of 108 and 143 ℃, respectively. Atomic force microscopy (AFM) measurements indicate that high-quality amorphous films of these novel compounds can be prepared by spin-coating. The oxidation potentials of TCPC-6 and TCPC-4 are significant lower than that of model compounds without peripheral carbazole groups, which suggests that these compounds have relatively high highest occupied molecular orbital (HOMO) energy levels and better hole-injection capabilities. Light-emitting devices fabricated by spin-coating films of these molecules exhibit deep-blue emission with Commission Internationale de l'Eclairage (CIE) chromaticity coordinates (x, y) of (0.16, 0.05); the devices fabricated using spin-coated TCPC-6 and TCPC-4 layers exhibit high luminance efficiencies of 1.35 and 0.90 cd A~(-1) (with external quantum efficiencies of 3.72 and 2.47 %), respectively.
机译:使用Suzuki偶联反应合成了具有刚性中心螺双芴核心和外围咔唑基团的新型芴基化合物TCPC-6和TCPC-4。对这些化合物的光学,电化学和热学性质进行了表征。这些化合物在溶液和薄膜中均显示出强烈的深蓝色发射。 TCPC-6和TCPC-4在固态下均具有非晶态形态,玻璃化转变温度(T_g)分别为108和143℃。原子力显微镜(AFM)测量表明,可以通过旋涂制备这些新型化合物的高质量非晶态膜。 TCPC-6和TCPC-4的氧化电势比没有外围咔唑基团的模型化合物的氧化电势低得多,这表明这些化合物具有相对较高的最高占据分子轨道(HOMO)能级和更高的空穴注入能力。通过旋涂这些分子的薄膜制成的发光器件显示深蓝色发射,其国际照明委员会(CIE)色度坐标(x,y)为(0.16,0.05);使用旋涂TCPC-6和TCPC-4层制造的器件分别具有1.35和0.90 cd A〜(-1)的高亮度效率(外部量子效率分别为3.72和2.47%)。

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