Low power consumption and fast response H 2 S gas sensor based on a chitosan-CuO hybrid nanocomposite thin film

In this work, a novel selective and low temperature H S gas sensor was fabricated based on copper (II) oxide nanoparticles (CuO NPs) in different concentrations, embedded in a conductivity-engineered organic (glycerol ionic liquid-doped chitosan) membrane/film. The sensing membranes of organic-inorg...

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Veröffentlicht in:Carbohydrate polymers 2020-05, Vol.236, p.116064
Hauptverfasser: Ali, Fajr I M, Mahmoud, Saleh T, Awwad, Falah, Greish, Yaser E, Abu-Hani, Ayah F S
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Sprache:eng
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Zusammenfassung:In this work, a novel selective and low temperature H S gas sensor was fabricated based on copper (II) oxide nanoparticles (CuO NPs) in different concentrations, embedded in a conductivity-engineered organic (glycerol ionic liquid-doped chitosan) membrane/film. The sensing membranes of organic-inorganic nanocomposites (CS-IL-CuO) were prepared by casting method and were tested against H S gas with reference to time at different temperatures and H S gas concentrations. The fabricated sensor showed a fast response (14 s) and good sensitivity (15 ppm) towards H S gas at a low temperature of 40 °C. Moreover, the sensor showed a high reversibility and less humidity dependence at 40 °C. Moreover, this type of hybrid nanocomposites sensor is easy and inexpensive to manufacture and is energy efficient. Thus, it has potential to be used for industrial applications in harsh environments.
ISSN:1879-1344
DOI:10.1016/j.carbpol.2020.116064