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Low driving voltage characteristics of triphenylene derivatives as electron transport materials in organic light-emitting diodes

机译:三亚苯基衍生物作为有机发光二极管中的电子传输材料的低驱动电压特性

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摘要

Triphenylene-based electron transport materials (ETMs), designated Bpy-TPl-4, with a coplanar molecular structure and a large electron affinity were designed and synthesized for use in organic light-emitting diodes (OLEDs). Spectroscopic ellipsometry measurements clarified that the deposited thin films of these ETMs have optical anisotropy, indicating that the molecules in the deposited thin films tend to be mostly oriented parallel to the substrate. Green OLEDs containing these ETMs allowed a lower driving voltage than that for OLEDs containing tris(8-hydroxyquinolinato)alumimim (Alq3) with a random orientation. In particular, the OLED containing Bpy-TP2 showed a significantly lower driving voltage, achieving lower power consumption when compared with conventional ETMs such as Alq3 and l,3,5-tris(2-phenyl-lH-benzo[d]imidazol-l-yl)benzene (TPBi). Also, the operational lifetime of a blue OLED containing Bpy-TP2 is equivalent to that of an OLED with TPBi. The increased driving voltage of the device containing Bpy-TP2 is significantly suppressed compared to that of the OLED containing TPBi.
机译:设计并合成了具有共面分子结构和大的电子亲和力的,名为Bpy-TP1-4的基于亚苯撑的三苯撑电子传输材料(ETM),用于有机发光二极管(OLED)。椭圆偏振光谱测量法表明,这些ETM的沉积薄膜具有光学各向异性,这表明沉积薄膜中的分子往往大多平行于基材取向。包含这些ETM的绿色OLED的驱动电压低于包含具有随机取向的三(8-羟基喹啉基)铝酰亚胺(Alq3)的OLED的驱动电压。特别是,与常规ETM(例如Alq3和1,3,5-三(2-苯基-1H-苯并[d]咪唑-1]等ETM相比),包含Bpy-TP2的OLED显示出明显更低的驱动电压,从而实现了更低的功耗。 -基)苯(TPBi)。另外,包含Bpy-TP2的蓝色OLED的使用寿命与具有TPBi的OLED的使用寿命相同。与包含TPBi的OLED相比,包含Bpy-TP2的器件的驱动电压升高得到了显着抑制。

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