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Efficient and Long-Living Light-Emitting Electrochemical Cells

机译:高效长寿命的发光电化学电池

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Three new heteroleptic iridium complexes that combine two approaches, one leading to a high stability and the other yielding a high luminescence efficiency, are presented. All complexes contain a phenyl group at the 6-position of the neutral bpy iigand, which holds an additional, increasingly bulky substituent on the 4-position. The phenyl group allows for intramolecular π-π stacking, which renders the complex more stable and yields long-living light-emitting electrochemical cells (LECs). The additional substituent increases the intersite distance between the cations in the film, reducing the quenching of the excitons, and should improve the efficiency of the LECs. Density functional theory calculations indicate that the three complexes have the desired π-π intramolecular interactions between the pendant phenyl ring of the bpy Iigand and the phenyl ring of one of the ppy ligands in the ground and the excited states. The photoiuminescence quantum efficiency of concentrated films of the complexes improves with the increasing size of the bulky groups indicating that the adopted strategy for improving the efficiency is successful. Indeed, LEC devices employing these complexes as the primary active component show shorter turn-on times, higher efficiencies and luminances, and, surprisingly, also demonstrate longer device stabilities.
机译:提出了三种结合两种方法的新的杂铱铱配合物,一种导致高稳定性,另一种产生高发光效率。所有络合物在中性配位配体的6位上都含有一个苯基,该苯基在4位上具有一个越来越大的取代基。苯基允许分子内π-π堆叠,从而使复合物更稳定并产生长寿命的发光电化学电池(LEC)。附加的取代基增加了膜中阳离子之间的位点间距离,减少了激子的猝灭,并应提高LEC的效率。密度泛函理论计算表明,三种配合物在基态和激发态下在bpy配体的侧基苯环与ppy配体之一的苯环之间具有所需的π-π分子内相互作用。配合物浓缩膜的光致发光量子效率随大基团尺寸的增加而提高,表明所采用的提高效率的策略是成功的。实际上,采用这些复合物作为主要活性成分的LEC器件显示出更短的导通时间,更高的效率和亮度,并且令人惊讶地,还显示出了更长的器件稳定性。

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  • 来源
    《Advanced Functional Materials 》 |2010年第9期| P.1511-1520| 共10页
  • 作者单位

    Institute de Ciencia Molecular Universidad de Valencia PO Box 22085, Valencia (Spain);

    rnInstitute de Ciencia Molecular Universidad de Valencia PO Box 22085, Valencia (Spain);

    rnInstitute de Ciencia Molecular Universidad de Valencia PO Box 22085, Valencia (Spain) Fundacio General de la Universitat de Valencia (FCUV) PO Box 22085, Valencia (Spain);

    rnDepartment of Chemistry University of Basel Spitalstrasse 51, Basel, CH-4056 (Switzerland);

    rnDepartment of Chemistry University of Basel Spitalstrasse 51, Basel, CH-4056 (Switzerland);

    rnDepartment of Chemistry University of Basel Spitalstrasse 51, Basel, CH-4056 (Switzerland);

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