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Carrier Modulation Layer-Enhanced Organic Light-Emitting Diodes

机译:载流子调制层增强型有机发光二极管

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摘要

Organic light-emitting diode (OLED)-based display products have already emerged in the market and their efficiencies and lifetimes are sound at the comparatively low required luminance. To realize OLED for lighting application sooner, higher light quality and better power efficiency at elevated luminance are still demanded. This review reveals the advantages of incorporating a nano-scale carrier modulation layer (CML), also known as a spacer, carrier-regulating layer, or interlayer, among other terms, to tune the chromaticity and color temperature as well as to markedly improve the device efficiency and color rendering index (CRI) for numerous OLED devices. The functions of the CML can be enhanced as multiple layers and blend structures are employed. At proper thickness, the employment of CML enables the device to balance the distribution of carriers in the two emissive zones and achieve high device efficiencies and long operational lifetime while maintaining very high CRI. Moreover, we have also reviewed the effect of using CML on the most significant characteristics of OLEDs, namely: efficiency, luminance, life-time, CRI, SRI, chromaticity, and the color temperature, and see how the thickness tuning and selection of proper CML are crucial to effectively control the OLED device performance.
机译:基于有机发光二极管(OLED)的显示产品已经在市场上出现,并且其效率和寿命在要求的亮度相对较低的情况下仍属良好。为了更快地实现用于照明应用的OLED,仍然需要更高的光质量和更高的亮度下的功率效率。这篇综述揭示了掺入纳米级载流子调制层(CML)(也称为隔离层,载流子调节层或中间层)等优点,以调节色度和色温以及显着改善色散。众多OLED设备的设备效率和显色指数(CRI)。当使用多层和混合结构时,可以增强CML的功能。在适当的厚度下,采用CML可使器件平衡两个发射区中载流子的分布,并在保持很高的CRI的同时实现高器件效率和长使用寿命。此外,我们还回顾了使用CML对OLED最显着特性的影响,这些特性包括:效率,亮度,寿命,CRI,SRI,色度和色温,并了解厚度调整和选择合适的方法。 CML对于有效控制OLED器件的性能至关重要。

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