Journal of Environmental Protection

Journal of Environmental Protection

ISSN Print: 2152-2197
ISSN Online: 2152-2219
www.scirp.org/journal/jep
E-mail: jep@scirp.org
"High-Sensitivity Ozone Sensing Using 280 nm Deep Ultraviolet Light-Emitting Diode for Detection of Natural Hazard Ozone"
written by Yoshinobu Aoyagi, Misaichi Takeuchi, Kaoru Yoshida, Masahito Kurouchi, Tsutomu Araki, Yasushi Nanishi, Hiroyasi Sugano, Yumi Ahiko, Hirotaka Nakamura,
published by Journal of Environmental Protection, Vol.3 No.8, 2012
has been cited by the following article(s):
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[14] Deep-ultraviolet integrated photonic and optoelectronic devices: A prospect of the hybridization of group III–nitrides, III–oxides, and two-dimensional materials
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[15] Gas Detection Using Portable Deep-UV Absorption Spectrophotometry: A Review
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[16] Application of deep-UV Absorption Spectrophotometry for Gas Sensing: a review
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[17] Influence of trap level on an Al0. 6Ga0. 4N/Al0. 5Ga0. 5N metal—semiconductor—metal UV photodetector
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[18] Behaviour of Ozone Absorption Cross Section to Change in Optical path length and Pressure in the UV
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[19] 286 nm monolithic multicomponent system
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[20] UV-LEDs for the Disinfection and Bio-Sensing Applications
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[21] A compact breath acetone analyser based on an ultraviolet light emitting diode
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[22] Enhanced the Optical Power of AlGaN-based Deep Ultraviolet Light-Emitting Diode by Optimizing Mesa Sidewall Angle
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[23] Comparative Study of the Effect of Sensing Parameters on Ozone Gas Absorption-Cross-Section
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[24] Molecular absorption measurements with an optical fibre coupled array of ultra-violet light-emitting diodes
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[25] Comparative Study of the Effect of Sensing Parameters on Ozone Gas Comparative Study of the Effect of Sensing Parameters on Ozone Gas Absorption-Cross …
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[26] Light-emitting diodes and photodiodes in the deep ultra-violet range for absorption photometry in liquid chromatography, capillary electrophoresis and gas sensing
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[27] Wide range analysis of ozone gas concentration in ultraviolet region
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[28] Transmittance optimization for high sensitivity ozone concentration measurement
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[29] A deep-UV light-emitting diode-based absorption detector for benzene, toluene, ethylbenzene, and the xylene compounds
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[30] UV Curable Formulations for UV-C LEDs
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[31] UV Curable Formulations for Deep UV LEDs
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[32] Light-emitting diodes and photodiodes in the deep ultra-violet range for absorption photometry in liquid chromatography, capillary electrophoresis and gas …
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[33] Ratiometric Method for Ozone Absorption Cross Section Measurement
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[34] OZONE SENSOR REVIEW FROM THE FUNDAMENTAL PERSPECTIVE
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[35] Progress in ozone sensors performance: a review
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[36] Measurements of ozone absorption cross section with ratiometric and non-ratiometric methods
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[37] A Novel Optical Ozone Sensor Based on Purely Organic Phosphor
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[39] Alternative wavelength for linearity preservation of B eer–L ambert Law in ozone concentration measurement
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[40] Analytical devices based on light-emitting diodes-a review of the state-of-the-art
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[41] Optical Path Length and Absorption Cross Section Optimization for High Sensitivity Ozone Concentration Measurement
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[42] Absorbance detector for capillary electrophoresis based on light-emitting diodes and photodiodes for the deep-ultraviolet range
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[43] S3-P1: Reliability and lifetime of pseudomorphic UVC leds on AlN substrate under various stress condition
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[44] Interchangeable Range of Ozone Concentration Simulation for Low Cost Reconfigurable Brass Gas Cell
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