首页> 外文期刊>Advanced Functional Materials >Versatile, Benzimidazoie/Amine-Based Ambipolar Compounds for Electroluminescent Applications: Single-Layer, Blue, Fluorescent OLEDs, Hosts for Single-Layer, Phosphorescent OLEDs
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Versatile, Benzimidazoie/Amine-Based Ambipolar Compounds for Electroluminescent Applications: Single-Layer, Blue, Fluorescent OLEDs, Hosts for Single-Layer, Phosphorescent OLEDs

机译:用于电致发光应用的多功能,基于苯并咪唑/胺的双极性化合物:单层,蓝色,荧光OLED,单层,磷光OLED的主体

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摘要

A series of compounds containing aryiamine and 1,2-diphenyl-1H-benz[d]imidazote moieties are developed as ambipolar, biue-emitting materials with tunable blue-emitting wavelengths, tunable ambipolar carrier-transport properties and tunable triplet energy gaps. These compounds possess several novel properties: (1) they emit in the blue region with high quantum yields; (2) they have high morphological stability and thermal stability; (3) they are capable of ambipolar carrier transport; (4) they possess tunable triplet energy gaps, suitable as hosts for yellow-orange to green phosphors. The electron and hole mobilities of these compounds lie in the range of 0.68-144 × 10~(-6) and 034-147 × 10~(-6)cm~2 V~(-1) s~(-1), respectively. High-performance, single-layer, blue-emitting, fluorescent organic light-emitting diodes (OLEDs) are achieved with these ambipolar materials. High-performance, single-layer, phosphorescent OLEDs with yellow-orange to green emission are also been demonstrated using these ambipolar materials, which have different triplet energy gaps as the host for yellow-orange-emitting to green-emitting iridium complexes. When these ambipolar, blue-emitting materials are lightly doped with a yellow-orange-emitting iridium complex, white organic light-emitting diodes (WOLEDs) can be achieved, as well by the use of the incomplete energy transfer between the host and the dopant.
机译:已开发出一系列包含芳胺和1,2-二苯基-1H-苯并[d]咪唑酸酯部分的化合物,作为双极性,发射蓝宝石的材料,其蓝光发射波长可调,双极性载流子传输特性可调,三重态能隙可调。这些化合物具有几种新颖的特性:(1)它们以高量子产率在蓝色区域发射; (2)具有较高的形态稳定性和热稳定性; (3)它们能够进行双极载流子运输; (4)它们具有可调的三重态能隙,适合作为黄橙色到绿色磷光体的主体。这些化合物的电子和空穴迁移率在0.68-144×10〜(-6)和034-147×10〜(-6)cm〜2 V〜(-1)s〜(-1)的范围内,分别。这些双极性材料可实现高性能的单层蓝光发射荧光有机发光二极管(OLED)。使用这些双极性材料也证明了具有橙黄色至绿色发射的高性能单层磷光OLED,这些材料具有不同的三线态能隙,作为发射橙黄色到绿色发射的铱络合物的主体。当这些发射双极性的蓝色材料轻掺杂有发射橙黄色的铱配合物时,也可以通过使用主体和掺杂剂之间不完全的能量转移来实现白色有机发光二极管(WOLED) 。

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  • 来源
    《Advanced Functional Materials》 |2009年第16期|2661-2670|共10页
  • 作者单位

    Institute of Chemistry, Academia Sinica Taipei, Taiwan 115 (Republic of China);

    Institute of Chemistry, Academia Sinica Taipei, Taiwan 115 (Republic of China);

    Institute of Chemistry, Academia Sinica Taipei, Taiwan 115 (Republic of China);

    Institute of Chemistry, Academia Sinica Taipei, Taiwan 115 (Republic of China);

    Institute of Chemistry, Academia Sinica Taipei, Taiwan 115 (Republic of China) Department of Chemistry, National Central University Chungli, Taiwan 320;

    Department of Electrical Engineering Graduate Institute of Electro-optical Engineering and Graduate Institute of Electronics Engineering National Taiwan University Taipei, Taiwan 106 (Republic of China);

    Department of Electrical Engineering Graduate Institute of Electro-optical Engineering and Graduate Institute of Electronics Engineering National Taiwan University Taipei, Taiwan 106 (Republic of China);

    Department of Electrical Engineering Graduate Institute of Electro-optical Engineering and Graduate Institute of Electronics Engineering National Taiwan University Taipei, Taiwan 106 (Republic of China);

    Department of Electrical Engineering Graduate Institute of Electro-optical Engineering and Graduate Institute of Electronics Engineering National Taiwan University Taipei, Taiwan 106 (Republic of China);

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