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首页> 外文期刊>Applied Physics Letters >Thermally crosslinked hole-transporting layers for cascade hole-injection and effective electron-blocking/exciton-confinement in phosphorescent polymer light-emitting diodes
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Thermally crosslinked hole-transporting layers for cascade hole-injection and effective electron-blocking/exciton-confinement in phosphorescent polymer light-emitting diodes

机译:热交联的空穴传输层,用于磷光聚合物发光二极管中的级联空穴注入和有效的电子阻挡/激子约束

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摘要

A bilayer hole-injection/transport structure was prepared by thermally crosslinking two separate hole-transport layers (HTL). The resulting films possess excellent optical quality and solvent resistance. Cascade hole-injection and effective electron-blocking/exciton confinement can be achieved for light-emitting diodes (LEDs) using blue phosphorescent emitters, such as bis(4′,6′-difluorophenylpyridinato)tetrakis(1-pyrazolyl)borate. The first HTL was based on tetraphenyldiamine (TPD) has its highest occupied molecular orbit (HOMO) level lies at -5.3 eV, and the second HTL with 4,4′,4″-tri(N-carbazolyl)triphenylamine has its HOMO level lies at -5.7 eV. The preliminary results from blue LEDs using these cascade HTLs showed much improved device performance than those only use a single layer hole-transporting polymer.
机译:通过热交联两个单独的空穴传输层(HTL)来制备双层空穴注入/传输结构。所得膜具有优异的光学质量和耐溶剂性。对于使用蓝色磷光发射体(例如双(4',6'-二氟苯基吡啶并)四(1-吡唑基)硼酸酯)的发光二极管(LED),可以实现级联空穴注入和有效的电子阻挡/激子限制。第一个基于四苯二胺(TPD)的HTL具有最高的占据分子轨道(HOMO)水平为-5.3 eV,第二个具有4,4',4''-三(N-咔唑基)三苯胺的HTL具有其HOMO水平处于-5.7 eV。使用这些级联HTL的蓝色LED的初步结果显示,与仅使用单层空穴传输聚合物的蓝色LED相比,器件的性能大大提高。

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