High performance hybrid white OLEDs based on new platinum complexes and new blue fluorescence host

Anurach Poloek, Chieh Wang, Chiao‐Wen Lin, Chin‐Ti Chen, Chao-Tsen Chen
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引用次数: 0

Abstract

A new series of platinum complexes containing 4-hydroxy-1,5-naphtyridine derivative with different substitutens such as methyl, dimethyl, phenyl, phenoxy, dimethyl amine, piperidine, morpholine, phenoxazine or carbazole unit as the primary ligand and 2-(2,4-difluorophenyl)pyridine as the secondary ligand were synthesized and characterized. Single crystal X-ray diffraction studies of FPtOPhND, FPtCzND and FPtdmaND showed trans-coordinated in distorted square-planar geometry. Their photophysical properties and electrochemical properties were examined. All platinum complexes in these series exhibited dual emissions not only in solution but also in solid state thin film. Employing CBP or 4P-NPD as host material, high efficiency monochromatic and high quality hybrid white organic light emitting diodes (WOLEDs) were achieved with the single platinum complex dopant device, a relatively simple device configuration.
基于新型铂配合物和新型蓝色荧光主体的高性能混合白色oled
合成了以甲基、二甲基、苯基、苯氧基、二甲基胺、哌啶、啉、苯恶嗪或咔唑等不同取代基为一级配体,以2-(2,4-二氟苯基)吡啶为二级配体的4-羟基-1,5-萘啶衍生物铂配合物。单晶x射线衍射研究表明,FPtOPhND、FPtCzND和FPtdmaND在扭曲的方形平面几何结构中呈反配位。测试了它们的光物理性质和电化学性质。所有铂配合物不仅在溶液中,而且在固态薄膜中都表现出双发射。采用CBP或4P-NPD为主体材料,采用相对简单的单铂复合掺杂器件,实现了高效单色、高质量的混合白色有机发光二极管(WOLEDs)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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