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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Towards blue emitting monocyclometalated gold(iii) complexes - synthesis, characterization and photophysical investigations
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Towards blue emitting monocyclometalated gold(iii) complexes - synthesis, characterization and photophysical investigations

机译:朝向蓝色发光单键素化金(III)复合物 - 合成,表征和光物理研究

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摘要

Blue emitting phosphorescent materials with high efficiency and high stability are a key requirement for the wider adoption of organic light emitting devices (OLEDs). In order to achieve triplet derived emission at the higher energy region of the electromagnetic spectrum, a series of neutral, monocyclometalated gold(iii) complexes with trifluoromethyl and trifluoromethoxy functionalized 2-phenylpyridine (ppy) derivatives, 2-anilinopyridine (apy), 2-benzoylpyridine (bpy) and 2-benzylpyridine (bepy), as the cyclometalating framework and diaryl or monoaryl alkyne as ancillary ligands have been designed and synthesized. Extensive photophysical and chemical characterization by various nuclear magnetic resonance spectroscopy techniques, elemental analysis and single crystal X-ray diffraction studies of selected compounds was carried out to confirm the structural and the chemical identity of the complexes. The emission wavelength maxima of the complexes appear in the blue/sky blue region of the electromagnetic spectrum. Detailed photophysical investigations revealed that the different emission properties of the complexes are predominantly dictated by the electronic properties of the cyclometalating ligand. The interesting photoluminescence properties along with the facile synthetic access makes this a promising concept to obtain highly suitable blue emitting gold(iii) complexes.
机译:具有高效率和高稳定性的蓝色发光磷光材料是宽采采用有机发光器件(OLED)的关键要求。为了在电磁谱的较高能量区域实现三联衍生发射,一系列中性,单核晶片金(III)配合物,具有三氟甲基和三氟甲氧基官能化2-苯基吡啶(PPY)衍生物,2-苯胺吡啶(APY),2-设计和合成了苯甲酰吡啶(BPY)和2-苄基吡啶(BEPY),作为与辅助配体的环荷兰骨架和金属芳基或单芳烃或单芳基炔烃。通过各种核磁共振谱技术进行广泛的光学和化学表征,进行了所选化合物的元素分析和单晶X射线衍射研究,以确认复合物的结构和化学特性。复合物的发光波长最大值出现在电磁谱的蓝色/天蓝色区域中。详细的光药研究表明,复合物的不同排放特性主要由环荷酸配体的电子性质决定。有趣的光致发光性能以及容易合成接入使得这是一种有希望的概念,以获得高度合适的蓝色发光金(III)络合物。

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