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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Linear and star-shaped benzimidazolyl derivatives: syntheses, photophysical properties and use as highly efficient electron transport materials in OLEDs
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Linear and star-shaped benzimidazolyl derivatives: syntheses, photophysical properties and use as highly efficient electron transport materials in OLEDs

机译:线性和星形苯并咪唑基衍生物:合成,光物理性质,并用作OLED中的高效电子传输材料

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摘要

Five benzimidazolyl functionalized linear and star-shaped molecules have been synthesized using Ullmann condensation methods. These molecules all possess deep LUMO energy levels and large HOMO-LUMO energy gaps ranging from 3.55 to 3.95 eV. All five compounds are fluorescent with emission in the UV region, and display high thermal and morphological stability. One of these star-shaped molecules, 2,4,5-tris(benzimidazolyl)-1,3,5-triazine, has been demonstrated to be a highly effective electron transport/hole blocking material in organic light emitting devices (OLEDs) with performance comparable to the commonly used electron transport material Alq(3) (q = 8-hydroxyquinolinate). In addition, metal ion titrations have established that these ligands show a distinct fluorescent response to the addition of Ag(I) or Zn(II) in solution.
机译:使用乌尔曼缩合法已经合成了五个苯并咪唑基官能化的线性和星形分子。这些分子都具有深LUMO能级和大HOMO-LUMO能隙,范围在3.55至3.95 eV之间。所有这五种化合物均具有荧光,并在UV区域发射,并显示出高的热稳定性和形态稳定性。这些星形分子之一2,4,5-三(苯并咪唑基)-1,3,5-三嗪已被证明是有机发光器件(OLED)中的一种高效电子传输/空穴阻挡材料性能可与常用的电子传输材料Alq(3)(q = 8-hydroxyquinolinate)相媲美。此外,金属离子滴定已经确定这些配体对溶液中添加的Ag(I)或Zn(II)表现出明显的荧光响应。

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