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All solution processed blue multi-layer light emitting diodes realized by thermal layer stabilization and orthogonal solvent processing

机译:所有溶液加工通过热层稳定和正交溶剂加工实现的蓝色多层发光二极管

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Herein we report on the fabrication and the properties of two highly efficient blue light emitting multilayer polymer light emitting diodes (PLEDs). The first device structure combines a thermally stabilized polymer with a material processed from an orthogonal solvent, allowing for the fabrication of a triple layer structure from solution. The well known poly(9,9-dioctyl-fluorene-co-N-(4-butylphenyl)-diphenylamine) (TFB), which can be stabilized in a bake-out procedure, was used as a hole transporting layer. A novel pyrene - triphenylamine (PPyrTPA) copolymer was used as emissive layer. The stack was finalized by a poly(fluorene) - derivative with polar side-chains, therefore being soluble in a polar solvent which allows for the deposition onto PPyrTPA without redissolving. The resulting PLED showed bright-blue electroluminescence (CIE1931 coordinates x=0.163; y=0.216) with a high efficiency of 1.42 cd/A and a peak luminescence of 16500 cd/m2. The second presented device configuration comprises a thermally stabilized indenofluorene - triphenylamine copolymer acting as hole transporter, and an emissive copolymer with building blocks specifically designed for blue light emission, effective charge carrier injection and transport as well as for exciton generation. This multilayer PLED led to deep-blue emission (CIE1931 x=0.144; y=0.129) with a remarkably high device efficiency of 9.7 cd/A. Additionally, atomic force microscopy was carried out to investigate the film morphology of the components of the stack and x-ray photoemission spectroscopy was performed to ensure a full coverage of the materials on top of each other. Ultraviolet photoemission spectroscopy confirmed the desired type-II band level offsets on the individual interfaces.
机译:在此报告制造和两个高效蓝光发射多层聚合物发光二极管(PLED)的性质。第一器件结构将热稳定的聚合物与从正交溶剂加工的材料组合,允许制造来自溶液的三层结构。众所周知的聚(9,9-二乙烯基 - 芴 - CO-N-(4-丁基苯基) - 二苯基胺)(TFB),其可以在烘焙过程中稳定化,用作空穴传输层。新型芘 - 三苯胺(PPERTPA)共聚物用作发光层。叠层由具有极性侧链的聚(芴) - 衍生物最终确定,因此可以溶于极性溶剂,其允许沉积到PPyrTPA上而不重新溶解。得到的镀锌显示出亮蓝电致发光(CIE1931坐标x = 0.163; y = 0.216),高效率为1.42cd / a和16500cd / m 2的峰发光。第二呈现的装置构造包括作为空穴转运蛋白的热稳定的茚磺酰胺 - 三苯胺共聚物,以及具有专门设计用于蓝色发光,有效电荷载体注射和运输以及激子产生的构建块的发光共聚物。这种多层镀层导致深蓝色发射(CIE1931 x = 0.144; y = 0.129),具有显着高的设备效率为9.7cd / a。另外,进行原子力显微镜检查以研究堆叠的组分的薄膜形态,并进行X射线照相光谱,以确保彼此顶部的材料完全覆盖。紫外线光扫描光谱证实了各个接口上所需的II频段级别偏移。

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