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通过使用优化的光学薄膜提高深紫外倒装芯片发光二极管的光提取特性和广角发射行为。

Enhancement of the light extraction characteristics and wide-angle emissive behavior of deep-ultraviolet flip-chip light-emitting diodes by using optimized optical films.

作者信息

Ye Zhi-Ting, Wei Lai, Tien Ching-Ho, Pan Shyi-Ming

出版信息

Opt Express. 2022 Apr 11;30(8):13447-13458. doi: 10.1364/OE.450662.

Abstract

We propose the use of optical films to enhance the light extraction efficiency (LEE) and wide-angle emission of traditional packaged deep-ultraviolet light-emitting diodes (DUV-LEDs). Total internal reflection occurs easily in DUV-LEDs because they contain sapphire, which has a high refractive index. DUV-LEDs also contain an aluminum nitride (AlN) ceramic substrate, which has high light absorption in the ultraviolet band. Photons are absorbed by the sapphire and AlN ceramic substrate, which reduces the LEE of DUV-LEDs. By adding a brightness enhancement film (BEF) on the sapphire surface and a high-reflection film (HRF) on the surface of the AlN ceramic substrate, the LEE of DUV-LEDs can be increased. Moreover, we designed a single-layer metal reflective film (SMRF) on the upper surface of the quartz glass in order to achieve wide-angle emission. Experimental results indicated that compared with traditional packaged DUV-LEDs, the light output power and external quantum efficiency of DUV-LEDs with a plated BEF, HRF, and SMRF increased by 18.3% and 18.2%, respectively. Moreover, an emission angle of 160° was achieved. In a reliability test, DUV-LEDs maintained more than 95% of the initial forward voltage and light output power after 1000 h of operation at 25°C, which indicated that the addition of an optical film can improve the light efficiency and long-term reliability of DUV-LEDs.

摘要

我们建议使用光学薄膜来提高传统封装深紫外发光二极管(DUV-LED)的光提取效率(LEE)和广角发射。在DUV-LED中很容易发生全内反射,因为它们包含具有高折射率的蓝宝石。DUV-LED还包含氮化铝(AlN)陶瓷基板,该基板在紫外波段具有高吸光性。光子被蓝宝石和AlN陶瓷基板吸收,这降低了DUV-LED的LEE。通过在蓝宝石表面添加增亮膜(BEF)以及在AlN陶瓷基板表面添加高反射膜(HRF),可以提高DUV-LED的LEE。此外,我们在石英玻璃上表面设计了单层金属反射膜(SMRF)以实现广角发射。实验结果表明,与传统封装的DUV-LED相比,镀有BEF、HRF和SMRF的DUV-LED的光输出功率和外量子效率分别提高了18.3%和18.2%。此外,实现了160°的发射角。在可靠性测试中,DUV-LED在25°C下运行1000小时后,保持了超过95%的初始正向电压和光输出功率,这表明添加光学薄膜可以提高DUV-LED的光效率和长期可靠性。

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