과제정보
이 연구는 산업통상자원부 한국산업기술진흥원 (KIAT)과 교육부 부처협업사업 반도체전공트랙사업 (P0022203)의 지원으로 수행하였다. 또한 렌즈 광원 시스템 설계와 E-콜리배양 물 살균장치 시험에 도움을 주신 한국산업기술대학교 정미숙 교수님과 호서대학교 장인성 교수님께 감사를 드립니다.
참고문헌
- P. Jarvis, O. Autin, E. H. Goslan, and F. Hassard, Application of Ultraviolet Light-Emitting Diodes (UV-LED) to Full-Scale Drinking-Water Disinfection, Water 11, 1894 (2019). https://doi.org/10.3390/w11091894
- S. W. Rhee, H. S. Park, Mercury Distribution of major Components from 3-baned and General Spent Fluorescent Lamp, J. Korea Soc. Waste Manag., 30, 265 (2013).
- D. Morita, M. Yamamoto, K. Akaishi, K. Matoba, K. Yasutomo, Y. Kasai, M. Sano, S. I. Nagahama, and T. Mukai, Watt-Class High-Output-Power 365 nm Ultra-violet Light-Emitting Diodes, Jpn. J. AppL phys, 43, 5945 (2004).
- S. J. Yu, D. H. Kim, Y. S. Choi, and H. Kim, Development of a Very Small LED Lamp with a Low-Thermal-Resistance Lead Frame for an LCD Backlight Unit, J. Inf.. Disp., 10, 49 (2009).
- J. H. Seo, J. S. Lee, S. Y. Kim, Y. J. Jeong, H. J. Park, D. Y. Nam, and M. S. Jung, Design of a Bar-type TIR Lens Having a Freeform Surface for Forming a Line Beam Using an LED Light Source, Korean Journal of Optics and Photonics, 28, 295 (2017).
- M. A. Wurtele, T. Kolbe, M. Lipsz, A. Kulberg, M. Weyers, M. Kneissl, M. Jekel, Application of GaN-based ultraviolet-C light emitting diodes -UV LEDs-for water disinfection, Water Res., 45, 1481 (2011).
- J. H. Sung, S. J. Yu, K. Anil, and M. S. Jung, Fabrication of 365 nm Wavelength High Transmittance Sil-icone Resin TIR Lens and High Directivity Light Source Module for Exposure System, J. Korean Inst. Electr. Electron. Mater. Eng., 31, 267 (2018).
- C. C. Liao, H. X. Lin, C. L. Chien, C. M. Chang, and C. P. Hsu, Dispensed dome lens validation through optical simulations for high irradiance UV LED module, 2014 International Conference on Electronics Packag-ing (ICEP) (pp. 676-679) (2014).
- T. Takano, T. Mino, J. Sakai, N. Noguchi, K. Tsubaki, and H. Hirayama, Deep-ultraviolet light-emitting diodes with external quantum efficiency higher than 20% at 275 nm achieved by improving light-extraction efficiency, Appl. Phys. Express., 10, 031002 (2017).