首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Cool to warm white light emission from hybrid inorganic/organic light-emitting diodes
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Cool to warm white light emission from hybrid inorganic/organic light-emitting diodes

机译:混合无机/有机发光二极管发出的冷到暖白光

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摘要

The synthesis and characterisation of two novel organic down-converting molecules is disclosed, together with their performance as functional colour-converters in combination with inorganic blue light-emitting diodes (LEDs). Each molecule contains two fluorene-triphenylamine arms, connected to either a benzothiadiazole or bisbenzothiadiazole core. These molecules have been selected on the basis that they are free from absorption bands in the green region of the visible spectrum to maximise their performance and offer improvements compared with previous BODIPY-containing analogues. The inorganic InGaN/GaN LED emits at 444 nm, overlying the absorption of each of the organic molecules. The combination of the blue (inorganic) and yellow (organic) emission is shown to produce reasonable quality, white light-emitting hybrid devices for both down-converter molecules. Cool to warm white light is achieved for both molecules by increasing the concentration. An optimum colour rendering index (CRI) value of 66 is obtained for the mono-benzothiadiazole molecule. Also a high blue-to-white efficacy (defined as white luminous flux (lm)/blue radiant flux (W)) of 368 lm W-1 is achieved, superseding the current phosphor converters of 200-300 lm W-1. A comparison of these down-converting molecules to the older generation BODIPY-containing molecules is also provided.
机译:公开了两种新颖的有机下转换分子的合成和表征,以及它们与无机蓝色发光二极管(LED)结合用作功能性颜色转换器的性能。每个分子包含两个芴-三苯胺臂,分别连接至苯并噻二唑或双苯并噻二唑核。选择这些分子的依据是,与以前的含BODIPY的类似物相比,它们在可见光谱的绿色区域没有吸收带,可最大程度地发挥性能并提供改进。无机InGaN / GaN LED在444 nm处发射,覆盖了每个有机分子的吸收。蓝光(无机)和黄光(有机)的组合显示出可以为下变频器分子产生质量合理的白色发光混合器件。通过增加浓度,两个分子均可实现冷至暖白光。单苯并噻二唑分子的最佳显色指数(CRI)值为66。还获得了368 lm W-1的高蓝白效率(定义为白光通量(lm)/蓝色辐射通量(W)),取代了目前的200-300 lm W-1的荧光粉转换器。还提供了这些下转换分子与较老的含BODIPY分子的比较。

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