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首页> 外文期刊>Organic Electronics >High efficiency OLEDs based on anthracene derivatives: The impact of electron donating and withdrawing group on the performance of OLED
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High efficiency OLEDs based on anthracene derivatives: The impact of electron donating and withdrawing group on the performance of OLED

机译:基于蒽衍生物的高效OLED:给电子和吸电子基团对OLED性能的影响

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摘要

New well-defined bulky anthracene derivatives with side groups having electron donating or withdrawing properties 8a-d were synthesized. The compounds contain substituted anthracene as the central core attaching 2-(4-(2-pyridinyl)- phenyl)vinyl and 4-R-phenyl [R: H (a), OMe (b) and CF_3 (c), N(Ph)_2 (d)] groups at 9- and 10- positions. The impact of electron donating, withdrawing and neutral groups and their influence on the molecules photophysical, charge transfer (CT), triplet transfer (TT) and triplet -triplet annihilation (TTA) properties has been investigated. Based on the photophysical studies the most promising molecule (8d) has been selected and high efficiency fluorescent OLEDs with EQE at very low current efficiency reaching 7% were obtained. The value at low current density implies a Triplet Fusion (TF) contribution of 45%, very close to the maximum theoretical value of 50% when only the singlet decay channel is open to TTA, however we believe that in this case both TTA and TADF contribute to the triplet harvesting to yield high EQE values, and this mixed triplet harvesting arises through the heterogeneity of the films. At high current density a brightness of 20000 cd/m~2 was achieved and it is assigned partially to the material crystallisation.
机译:合成了新的轮廓分明的具有侧基的大体积蒽衍生物,所述侧基具有给电子或吸电子性质8a-d。该化合物含有取代的蒽作为中心核心,连接2-(4-(2-吡啶基)-苯基)乙烯基和4-R-苯基[R:H(a),OMe(b)和CF_3(c),N( Ph)_2(d)]组位于9和10-位。研究了给电子,吸电子和中性基团的影响及其对分子的光物理,电荷转移(CT),三重态转移(TT)和三重态-三重态let灭(TTA)性质的影响。根据光物理研究,已选择了最有前途的分子(8d),并获得了在非常低的电流效率下达到EQE且达到7%的高效荧光OLED。低电流密度下的值表示三重峰融合(TF)贡献为45%,非常接近仅单峰衰减通道向TTA开放时的最大理论值50%,但是我们认为在这种情况下TTA和TADF有助于三重态收获以产生高EQE值,这种混合的三重态收获是由于薄膜的异质性而产生的。在高电流密度下,亮度达到了20000 cd / m〜2,部分归因于材料的结晶。

著录项

  • 来源
    《Organic Electronics 》 |2016年第3期| 149-157| 共9页
  • 作者单位

    Department of Physics, Durham University, Durham DH1 3LE, United Kingdom;

    TUBITAK Marmara Research Center, Chemistry Institute, p.b. 21, Gebze 41470, Kocaeli, Turkey;

    Mus Alparslan UEniversitesi, Education Faculty, Mus 49100, Turkey;

    Department of Physics, Durham University, Durham DH1 3LE, United Kingdom;

    Department of Physics, Durham University, Durham DH1 3LE, United Kingdom;

    Department of Physics, Durham University, Durham DH1 3LE, United Kingdom;

    Department of Physics, Durham University, Durham DH1 3LE, United Kingdom;

    TUBITAK Marmara Research Center, Chemistry Institute, p.b. 21, Gebze 41470, Kocaeli, Turkey;

    Uludag Universitesi, Science Faculty, Chemistry Department, Gorukle Kampusu, Nilufer 16059, Bursa, Turkey;

    Department of Physics, Durham University, Durham DH1 3LE, United Kingdom;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Anthracene derivatives; TTA; TADF; Material crystalization;

    机译:蒽衍生物;TTA;TADF;材料结晶;

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