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Tuning Wavelength:Synthesis and Characterization of Spiro-DPVF-Containing Polyfluorenes and Applications in Organic Light-Emitting Diodes

机译:调谐波长:含螺旋-DPVF的聚芴的合成,表征及其在有机发光二极管中的应用

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摘要

We have synthesized polyfluorene copolymers containing bis(2,2-diphenylvinyl)fluorene pendent groups attached orthogonally to the C-9 positions of fluorene units.These polymers possess high glass transition temperatures and good thermal stability.The results from PL studies indicate that most excitons formed in the polyfluorene backbone by direct photoexcitation are likely to migrate to lower-energy pendent groups,from which emission occurs.An organic light-emitting device using the copolymer PF4-DPVF as the emitting layer exhibits a voltage-independent and stable blue emission with color coordinates (0.15,0.17) at 11 V,with a maximum brightness of 3137 cd/m~2 at 9 V (262 mA/cm~2) and a maximum external quantum efficiency of 1.06%.In addition,we blended PF4-DPVF as the host material with 0.5 wt % of MEH-PPV to realize a white electroluminescence having CIE coordinates of (0.29,0.34) and a maximum brightness of 3258 cd/m~2 (119 mA/cm~2).We demonstrate that both Forster energy transfer and direct charge trapping/recombination on the MEH-PPV guest are responsible for the observed EL.
机译:我们已经合成了含有双(2,2-二苯基乙烯基)芴侧基的聚芴共聚物,它们垂直连接到芴单元的C-9位,这些聚合物具有很高的玻璃化转变温度和良好的热稳定性.PL研究的结果表明大多数激子通过直接光激发在聚芴主链上形成的聚苯乙烯很可能迁移到较低能量的侧基,从而产生发射。使用共聚物PF4-DPVF作为发光层的有机发光器件具有与电压无关且稳定的蓝色发射,在11 V时色坐标(0.15,0.17),在9 V(262 mA / cm〜2)时最大亮度为3137 cd / m〜2,最大外部量子效率为1.06%。此外,我们混合了PF4-以DPVF为主体材料,以0.5 wt%的MEH-PPV实现CIE坐标为(0.29,0.34),最大亮度为3258 cd / m〜2(119 mA / cm〜2)的白色电致发光。双方的福斯特能量转移在MEH-PPV客体上的直接电荷俘获/重组是所观察到的EL的原因。

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