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电致磷光杂双金属寡金属炔烃及其在溶液处理有机发光器件中的应用。

Electrophosphorescent heterobimetallic oligometallaynes and their applications in solution-processed organic light-emitting devices.

机构信息

MOE Key Laboratory for Nonequilibrium Synthesis and Modulation of Condensed Matter and Department of Chemistry, Faculty of Science, Xi'an Jiao Tong University, Xi'an 710049, P.R. China.

出版信息

Chem Asian J. 2010 Nov 2;5(11):2405-14. doi: 10.1002/asia.201000341.

Abstract

By combining the iridium(III) ppy-type complex (Hppy=2-phenylpyridine) with a square-planar platinum(II) unit, some novel phosphorescent oligometallaynes bearing dual metal centers (viz. Ir(III) and Pt(II)) were developed by combining trans-[Pt(PBu(3))(2)Cl(2)] with metalloligands of iridium possessing bifunctional pendant acetylene groups. Photophysical and computational studies indicated that the phosphorescent excited states arising from these oligometallaynes can be ascribed to the triplet emissive Ir(III) ppy-type chromophore, owing to the obvious trait (such as the longer phosphorescent lifetime at 77 K) also conferred by the Pt(II) center. So, the two different metal centers show a synergistic effect in governing the photophysical behavior of these heterometallic oligometallaynes. The inherent nature of these amorphous materials renders the fabrication of simple solution-processed doped phosphorescent organic light-emitting diodes (PHOLEDs) feasible by effectively blocking the close-packing of the host molecules. Saliently, such a synergistic effect is also important in affording decent device performance for the solution-processed PHOLEDs. A maximum brightness of 3,356 cd m(-2) (or 2,708 cd m(-2)), external quantum efficiency of 0.50% (or 0.67%), luminance efficiency of 1.59 cd A(-1) (or 1.55 cd A(-1)), and power efficiency of 0.60 Lm W(-1) (or 0.55 Lm W(-1)) for the yellow (or orange) phosphorescent PHOLEDs can be obtained. These results show the great potential of these bimetallic emitters for organic light-emitting diodes.

摘要

通过将铱(III)ppy 型配合物(Hppy=2-苯基吡啶)与平面正方形的铂(II)单元结合,一些具有双金属中心(即 Ir(III)和 Pt(II))的新型磷光寡金属炔烃通过将 trans-[Pt(PBu(3))(2)Cl(2)]与具有双功能侧炔基的铱金属配合物的金属配体结合而被开发出来。光物理和计算研究表明,这些寡金属炔烃产生的磷光激发态可归因于三重态发光 Ir(III)ppy 型发色团,这归因于 Pt(II)中心赋予的明显特征(例如 77 K 时更长的磷光寿命)。因此,两个不同的金属中心在控制这些杂金属寡金属炔烃的光物理行为方面表现出协同效应。这些非晶态材料的固有性质使得通过有效阻止主体分子的紧密堆积来制造简单的溶液处理掺杂磷光有机发光二极管(PHOLED)成为可能。突出的是,这种协同效应对于溶液处理 PHOLED 的良好器件性能也很重要。黄色(或橙色)磷光 PHOLED 可以获得 3356 cd m(-2)(或 2708 cd m(-2))的最大亮度、0.50%(或 0.67%)的外量子效率、1.59 cd A(-1)(或 1.55 cd A(-1))的亮度效率和 0.60 Lm W(-1)(或 0.55 Lm W(-1))的功率效率。这些结果表明这些双金属发射器在有机发光二极管中有很大的应用潜力。

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