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Deep-Blue and Hybrid-White Organic Light Emitting Diodes Based on a Twisting Carbazole-Benzofuro23-bPyrazine Fluorescent Emitter

机译:基于扭曲咔唑-苯并呋喃23-b吡嗪荧光发射体的深蓝色和白色混合有机发光二极管

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摘要

A novel deep-blue fluorescent emitter was designed and synthesized. The external quantum efficiency (ηEQE) of the blue-emitting, doped, organic light-emitting diode (OLED) was as high as 4.34%. The device also exhibited an excellent color purity with Commission Internationale de l’Eclairage (CIE) coordinates of x = 0.15 and y = 0.05. In addition, the triplet energy had a value of 2.7 eV, which is rare for an emitter with deep-blue emission, which makes it a preferred choice for high-performance white OLEDs. By optimizing the device architectures, the color of hybrid-white OLEDs could be tunable from warm white to cool white using the aforementioned material as a bifunctional material. That is, the ηEQE of the hybrid warm-white OLED is 20.1% with a CIE x and y of 0.46 and 0.48 and the ηEQE of the hybrid cool-white OLED is 9% with a CIE x and y of 0.34 and 0.33.
机译:设计并合成了一种新型的深蓝色荧光发射体。发射蓝光的掺杂有机发光二极管(OLED)的外部量子效率(ηEQE)高达4.34%。该设备还具有出色的色纯度,国际照明委员会(CIE)坐标为x = 0.15和y = 0.05。此外,三重态能量的值为2.7 eV,这对于具有深蓝色发射的发射极而言是罕见的,这使其成为高性能白色OLED的首选。通过优化设备架构,可以使用上述材料作为双功能材料,将混合白OLED的颜色从暖白调整为冷白。即,混合暖白OLED的ηEQE为20.1%,CIE x和y为0.46和0.48,并且混合冷白OLED的ηEQE为9%,CIE x和y为0.34和0.33。

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