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Highly efficient white OLEDs for lighting applications

机译:用于照明应用的高效白色OLED

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The use of organic light-emitting diodes (OLEDs) for large area general lighting purposes is gaining increasing interest during the recent years. Especially small molecule based OLEDs have already shown their potential for future applications. For white light emission OLEDs, power efficiencies exceeding that of incandescent bulbs could already be demonstrated, however additional improvements are needed to further mature the technology allowing for commercial applications as general purpose illuminating sources. Ultimately the efficiencies of fluorescent tubes should be reached or even excelled, a goal which could already be achieved in the past for green OLEDs.1 In this publication the authors will present highly efficient white OLEDs based on an intentional doping of the charge carrier transport layers and the usage of different state of the art emission principles. This presentation will compare white PIN-OLEDs based on phosphorescent emitters, fluorescent emitters and stacked OLEDs. It will be demonstrated that the reduction of the operating voltage by the use of intentionally doped transport layers leads to very high power efficiencies for white OLEDs, demonstrating power efficiencies of well above 20 lm/W @ 1000 cd/m2. The color rendering properties of the emitted light is very high and CRIs between 85 and 95 are achieved, therefore the requirements for standard applications in the field of lighting applications could be clearly fulfilled. The color coordinates of the light emission can be tuned within a wide range through the implementation of minor structural changes.
机译:使用的用于大面积一般照明用有机发光二极管(OLED)是获得在近年来越来越多的关注。基于尤其是小分子OLED已经显示出他们对未来的应用潜力。对于白光发射OLED中,功率效率超过了白炽灯泡可能已经被证实,但是需要额外的改进,进一步成熟的技术,允许用于商业应用,用作通用照明源。归根结底荧光灯管的效率应达到甚至表现出色,这可能已经过去绿色OLEDs.1实现在此发布的目标作者将介绍基于电荷传送层的故意掺杂高效白光OLED和本领域发射原理不同的状态的使用。本报告将基于磷光发光,荧光发光体和堆叠的OLED比较白PIN-OLED的。应当表明,通过使用有意掺杂的输运层的引线的操作电压的降低,以非常高的功率效率为白光OLED,证明远高于20流明/瓦@ 1000坎德拉/平方米的功率效率。显色的发射光的特性是非常高的,并且实现了85和95之间的CRI,因此在照明应用领域标准应用的要求可以清楚地满足。发光的颜色坐标可以在宽范围内通过的微小的结构变化的执行来调谐。

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