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Selective dual detection of hydrogen sulfide and methyl mercaptan using CuO/CuFe2O4 nanopattern chemiresistors

Authors
Lim, KyeoreiJo, Young-MooKim, SeonghwanYoon, Ji-WookJeong, Seong-YongKim, Jun-SikChoi, Hun JiCho, YoungkyuPark, JangpyoJeong, Yong WonLee, Jong-Heun
Issue Date
1-Dec-2021
Publisher
ELSEVIER SCIENCE SA
Keywords
Dual-mode gas sensor; Malodor gas sensor; Near-field electrospinning; Oxide nanopattern; Volatile sulfur compound sensor
Citation
SENSORS AND ACTUATORS B-CHEMICAL, v.348
Indexed
SCIE
SCOPUS
Journal Title
SENSORS AND ACTUATORS B-CHEMICAL
Volume
348
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/135497
DOI
10.1016/j.snb.2021.130665
ISSN
0925-4005
Abstract
Volatile sulfur compounds (VSCs), such as H2S and methyl mercaptan (MM), are malodorous and harmful gases. H2S and MM share analogical origins. However, they should be discriminated because of their different odor thresholds and health impacts. Herein, a nanopattern chemiresistor composed of aligned CuO-loaded CuFe2O4 nanofibers was prepared via direct-write near-field electrospinning. The CuO/CuFe2O4 sensor with the atomic ratio of [Cu]:[Fe] = 3:4 exhibited extremely high responses to ppm-level H2S and MM compared with other nanopattern sensors with different compositions ([Cu]/[Fe] = 2:4, 4:4, and 0:1). This can be attributed to the gas-accessible morphology of the nanopattern sensor, the formation of a nanoscale p(CuO)-n(CuFe2O4) junction, and the intimate reaction between the discretely loaded CuO nanoparticles and the VSCs. Furthermore, the CuO/CuFe2O4 sensor exhibited high selectivities to H2S and MM at 200 degrees C and 400 degrees C, respectively. The selective dual detection of H2S and MM using a single CuO/CuFe2O4 sensor via the simple modulation of the sensing temperature opens a new route for indoor air quality monitoring, ventilation control, halitosis diagnosis, and wine quality monitoring.
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