Monolithic integration of deep ultraviolet and visible light-emitting diodes for radiative sterilization application

Author:

Lu Yi1ORCID,Guo Yanan23ORCID,Liu Zhiyuan1ORCID,Yan Jianchang23ORCID,Wang Junxi23,Li Jinmin23ORCID,Li Xiaohang1ORCID

Affiliation:

1. Advanced Semiconductor Laboratory, Electrical and Computer Engineering Program, CEMSE Division, King Abdullah University of Science and Technology (KAUST) 1 , Thuwal 23955-6900, Kingdom of Saudi Arabia

2. Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences 2 , Beijing 100049, China

3. Research and Development Center for Semiconductor Lighting Technology, Institute of Semiconductors, Chinese Academy of Sciences 3 , Beijing 100083, China

Abstract

The demand for effective sterilization methods, particularly in the wake of the Covid-19 pandemic, has sparked interest in the use of deep ultraviolet (DUV) radiation for disinfection. The high risk of skin/eye exposure to the high-energy DUV radiation requires the integration of DUV and visible (VIS) LED chips to sterilize and indicate its operation simultaneously in the portable sterilization devices. However, conventional double-chip integration suffers from high power consumption and fabrication complexity. This study sets out to explore the monolithic integration of DUV and VIS LEDs for the radiative sterilization application. This is accomplished by cascading AlGaN/AlGaN/AlGaN multiple quantum wells (QWs) and GaN/InGaN/GaN QWs through the compositional grading AlGaN cascade region. The inevitable overflown electrons from DUV QWs are deliberately introduced into the VIS QWs, allowing for the electron–hole recombination and the simultaneous emission of VIS light. Both experiment and simulation results confirm the feasibility of the proposed dual-wavelength LED integration. The proposed DUV&VIS LED shows an external quantum efficiency and wall-plug efficiency of 2.03% and 1.54% at 40 mA, respectively. This study establishes a quantitative framework for the monolithic integration of DUV and VIS LEDs for radiative sterilization, which has the potential to replace the current technique of using discrete DUV and VIS double-chip configurations.

Funder

KAUST Baseline Fund

Near-term Grand Challenge Fund

Impact Acceleration Fund

National Key Research and Development Program of China

National Natural Science Foundation of China

Youth Innovation Promotion Association of the Chinese Academy of Sciences

Publisher

AIP Publishing

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5. See https://www.aolittel-china.com/disinfect-deep-ultraviolet-0-5w-3535-uv-surface-mount-uvc-led-alt35uva-uvc02-002.html for “ Disinfect deep ultraviolet 0.5W 3535 UV surface mount UVC LED ALT35UVA+UVC02-002.”

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