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Optical performance enhancement of light-emitting diodes with quantum dots through new remote type structure

机译:通过新型远程结构增强具有量子点的发光二极管的光学性能

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Nowadays colloidal quantum dots (QDs) have been developed as a promising light-converting material for light-emitting diodes (LEDs). However, QDs-based LEDs always show saturation effect at high forward current. In this paper, a new remote packaging structure was proposed to reduce the saturation effect and utilize the QDs fully. The comparison of optical performance between proposed remote structure and current structures, flat structure and air-gap with regular lens was conducted through experiments. The luminous efficiencies of air-gap structure with regular lens and proposed remote structure are over 22% higher than flat structure at the driving current of 20mA. With the current increasing from 20 to 800mA, the luminous efficiencies of flat structure and air-gap structure with regular lens decrease by 66.5% and 61.5%, respectively. While the proposed remote structure shows the luminous efficiency decrease of 37.7%. Therefore, at the driving current of 800mA, compared to current structures, the proposed remote structure increases the luminous flux by 70.5% and 50.1%, respectively. The experimental results demonstrate that the new packaging structure have large advantages in terms of the luminous efficiency and the stability.
机译:如今,胶体量子点(QD)已被开发为发光二极管(LED)的一种有前途的光转换材料。但是,基于QDs的LED总是在高正向电流下表现出饱和效应。本文提出了一种新的远程包装结构,以减少饱和效应并充分利用量子点。通过实验对拟议的远程结构和当前结构,平面结构和带规则透镜的气隙之间的光学性能进行了比较。在20mA的驱动电流下,具有规则透镜的气隙结构和建议的远程结构的发光效率比平面结构高22%以上。随着电流从20mA增加到800mA,带有规则透镜的平面结构和气隙结构的发光效率分别降低了66.5%和61.5%。而所提出的远程结构显示出发光效率降低了37.7%。因此,与当前结构相比,在800mA的驱动电流下,所提出的远程结构分别将光通量增加了70.5%和50.1%。实验结果表明,该新型包装结构在发光效率和稳定性方面具有很大的优势。

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