• Optoelectronic Technology
  • Vol. 43, Issue 3, 233 (2023)
Wenbo LI1, Wentao LI2, Leming TANG1, Yong YANG1, Qiming XU3、4, and Yanwei SHEN4
Author Affiliations
  • 1Guangdong Institute of Semiconductor Micro‑Nano Manufacturing Technology, Foshan Guangdong 528225, CHN
  • 2State Key Laboratory of Pollution Control and Resources Reuse, School of the Environment, Nanjing University, Nanjing 1003, CHN
  • 3Gusu Laboratory of Materials, Suzhou Jiangsu 21512, CHN
  • 4Suzhou LEKIN Semiconductor Co., Ltd., Suzhou Jiangsu 21513, CHN
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    DOI: 10.19453/j.cnki.1005-488x.2023.03.008 Cite this Article
    Wenbo LI, Wentao LI, Leming TANG, Yong YANG, Qiming XU, Yanwei SHEN. Research on the Fabrication and Application of 230 nm Far-UVC LED Packaging Device[J]. Optoelectronic Technology, 2023, 43(3): 233 Copy Citation Text show less

    Abstract

    The 230 nm far-UVC LED packaging device was fabricated, and the influence of the photoelectric performance and reliability by using fluorine resin for packaging were studied. The results showed that the optical power of 230 nm far-UVC LED packaging device with fluorine resin had a increase of 13%, which could reach 1 mW, and no influence was found in aging performance, while the photoelectric conversion efficiency was still less than 0.1%. After 216 h normal temperature aging, the light maintenance rate decreased to 45%. The application of 230 nm far-UVC device for detection of nitrate concentration was also evaluated. The results showed that when the concentration was lower than 15 mg/L, the absorbance in cm-1 showed a linear relationship with the concentration of the nitrate solution, which indicated that the 230 nm far-UVC device could be used in nitrate determination.
    Wenbo LI, Wentao LI, Leming TANG, Yong YANG, Qiming XU, Yanwei SHEN. Research on the Fabrication and Application of 230 nm Far-UVC LED Packaging Device[J]. Optoelectronic Technology, 2023, 43(3): 233
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