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Recent advances in phosphorescent platinum complexes for organic light-emitting diodes

机译:用于有机发光二极管的磷光铂络合物的最新进展

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摘要

Phosphorescent organometallic compounds based on heavy transition metal complexes (TMCs) are an appealing research topic of enormous current interest. Amongst all different fields in which they found valuable application, development of emitting materials based on TMCs have become crucial for electroluminescent devices such as phosphorescent organic light-emitting diodes (PhOLEDs) and light-emitting electrochemical cells (LEECs). This interest is driven by the fact that luminescent TMCs with long-lived excited state lifetimes are able to efficiently harvest both singlet and triplet electro-generated excitons, thus opening the possibility to achieve theoretically 100% internal quantum efficiency in such devices. In the recent past, various classes of compounds have been reported, possessing a beautiful structural variety that allowed to nicely obtain efficient photo- and electroluminescence with high colour purity in the red, green and blue (RGB) portions of the visible spectrum. In addition, achievement of efficient emission beyond such range towards ultraviolet (UV) and near infrared (NIR) regions was also challenged. By employing TMCs as triplet emitters in OLEDs, remarkably high device performances were demonstrated, with square planar platinum(II) complexes bearing π-conjugated chromophoric ligands playing a key role in such respect. In this contribution, the most recent and promising trends in the field of phosphorescent platinum complexes will be reviewed and discussed. In particular, the importance of proper molecular design that underpins the successful achievement of improved photophysical features and enhanced device performances will be highlighted. Special emphasis will be devoted to those recent systems that have been employed as triplet emitters in efficient PhOLEDs.
机译:基于重过渡金属配合物(TMC)的磷光有机金属化合物是当前具有极大兴趣的有吸引力的研究主题。在他们发现有价值应用的所有不同领域中,基于TMC的发光材料的开发对于电致发光器件(例如磷光有机发光二极管(PhOLED)和发光电化学电池(LEEC))变得至关重要。这种兴趣是由以下事实引起的:具有长激发态寿命的发光TMC能够有效地捕获单重态和三重态电激发子,从而为在此类器件中实现理论上100%的内部量子效率开辟了可能性。在最近的过去,已经报道了各种类型的化合物,它们具有美丽的结构变化,可以很好地获得有效的光致发光和电致发光,并且在可见光谱的红色,绿色和蓝色(RGB)部分具有很高的色纯度。另外,实现向紫外(UV)和近红外(NIR)区域的这种范围之外的有效发射也受到了挑战。通过将TMC用作OLED中的三重态发射极,显示了非常高的器件性能,带有π共轭发色配体的方形平面铂(II)络合物在这方面起着关键作用。在此贡献中,将审查和讨论磷光铂络合物领域的最新和有希望的趋势。特别是,将强调正确分子设计的重要性,这些分子设计是成功实现改善的光物理特征和增强的器件性能的基础。将特别强调那些在高效PhOLED中用作三重态发射器的最新系统。

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