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Synthesis and properties of hyperbranched polymers for white polymer light-emitting diodes

机译:白聚合物发光二极管超支化聚合物的合成与性能

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摘要

In this work, a series of hyperbranched copolymers with fluorene-alt-carbazole as the branches, three-dimensional-structured spiro[3.3]heptane-2,6-dispirofluorene (SDF) as the core, and iridium 1-(4-bromophenyl)-isoquinoline (acetylacetone) (Ir(Brpiq)(2)acac) as the dimming group were synthesized by one-pot Suzuki polycondensation for white emission. All copolymers show great thermal stabilities and high hole-transporting ability due to the introduction of the carbazole unit. The hyperbranched structures for copolymers can suppress the interchain interactions efficiently, and help to form amorphous films. The fabricated polymer light-emitting devices (PLEDs) based on the above synthesized copolymers realize good white light emission, and achieve high electroluminescence (EL) performance. For example, for the optimized PLED, the maximum luminance and current efficiency reach 6210 cd m(-2) and 6.30 cd A(-1), respectively, indicating the synthesized hyperbranched copolymers have potential application in solution-processable white polymer light-emitting diodes.
机译:在这项工作中,一系列具有芴 - ALT-咔唑的超支化共聚物作为分支,三维结构螺纹[3.3]庚烷-2,6-减排(SDF)作为核心,铱1-(4-溴苯基) - 通过一锅铃木缩聚合成调光组,喹啉(乙酰丙酮)(Ir(BRPIQ)(2)ACAC)进行白色排放。由于引入咔唑单元,所有共聚物均显示出具有很大的热稳定性和高空穴传输能力。共聚物的超支化结构可以有效地抑制间隔相互作用,并有助于形成无定形膜。基于上述合成共聚物的制造的聚合物发光器件(PLED)实现了良好的白光发射,并实现了高电致发光(EL)性能。例如,对于优化的PLED,最大亮度和电流效率分别达到6210cdm(-2)和6.30cd A(-1),表示合成的超抗分共聚物在溶液可加工的白色聚合物发光中具有潜在的应用二极管。

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    《RSC Advances》 |2019年第62期|共8页
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  • 正文语种 eng
  • 中图分类 化学;
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