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首页> 外文期刊>Organic Electronics >Dipyrenylpyridines for electron-transporting materials in organic light emitting devices and their structural effect on electron injection from LiF/Al cathode
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Dipyrenylpyridines for electron-transporting materials in organic light emitting devices and their structural effect on electron injection from LiF/Al cathode

机译:用于有机发光器件中电子传输材料的二苯甲基吡啶及其对LiF / Al阴极电子注入的结构影响

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摘要

3,5-Dipyrenylpyridine (PY1) and 2,6-dipyrenylpyridine (PY2) were synthesized to achieve not only efficient electron injection from cathode but also high electron mobility. The both of compounds showed much higher electron mobilities than that of Alq_3, and have a similar ionization potential and electron affinity. However, the barrier height of electron injection from cathode to PY1 in an organic light emitting device was much smaller than that to PY2, probably due to the steric hindrance to the central pyridine group. These results suggest that the chemical affinity of electron-transporting materials with cathode is more important than their own electron affinity to improve the electron injection.
机译:合成了3,5-二苯甲基吡啶(PY1)和2,6-二苯甲基吡啶(PY2),不仅实现了从阴极的有效电子注入,而且实现了高电子迁移率。两种化合物都显示出比Alq_3高得多的电子迁移率,并且具有相似的电离势和电子亲和力。然而,在有机发光器件中,从阴极到PY1的电子注入的势垒高度远小于对PY2的电子注入的势垒高度,这可能是由于对中心吡啶基的空间位阻。这些结果表明,电子传输材料与阴极的化学亲和力比其自身的电子亲和力对改善电子注入更为重要。

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