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A printable thermally activated delayed fluorescence polymer light emitting diode

机译:可印刷的热活化延迟荧光聚合物发光二极管

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Amongst emissive materials for organic light emitting diodes (OLEDs), thermally activated delayed fluorescence (TADF) materials have shown substantial promise in the last few years. For OLEDs, solution processable and printable emissive materials are highly desirable as printing allows for precise patterning without masks, enables deposition of nanometer scale thicknesses and results in minimal wastage of material. Herein, we introduce a solution processable TADF emitting polymer as an emissive material for OLEDs. The bespoke polymer structure features the TADF emitter 4-(9H-carbazol9-yl)-2-(3 '-hydroxy-[1,1 '-biphenyl]-3-yl)isoindoline-1,3-dione as a pendant group on a poly(methyl methacrylate) based polymer chain. The resulting OLEDs have a peak emission wavelength of 520 nm with a maximum luminance of around 4700 cd m(-2). The peak emission wavelength can be blue-shifted by exciplex management to achieve a peak wavelength of 494 nm. Critically, we employed the TADF-containing polymer system to ink-jet print OLEDs, demonstrating that such polymers are viable for printable OLEDs.
机译:在有机发光二极管(OLED)的发光材料中,热活化的延迟荧光(TADF)材料在过去几年中显示出实质的承诺。对于OLED,溶液可加工和可印刷的发光材料非常希望,因为印刷允许精确的图案化而没有掩模,可以沉积纳米尺度厚度并导致材料的最小浪费。在此,我们介绍一种溶液加工TADF发射聚合物作为OLED的发射材料。定制聚合物结构具有TADF发射器4-(9H-咔唑.9-y1)-2-(3'-羟基-[1,1'-biphenyl] -3-基)异吲哚-1,3-二酮作为侧链组在聚(甲基丙烯酸甲酯)的聚合物链上。所得的OLED具有520nm的峰值发射波长,最大亮度为约4700cdm(-2)。峰值发射波长可以通过Exciplex管理蓝相移动,以实现494nm的峰值波长。批判性地,我们使用含Tadf的聚合物系统到喷墨印刷OLED,证明这种聚合物对可印刷OLED可行。

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