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SnO2/Au multilayer heterostructure for efficient CO sensing

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Abstract In this work, SnO2/Au multilayered heterostructures based gas sensors are fabricated to detect CO gas. The Sn/Au multilayer structure was grown by thermal evaporation method followed by oxidation at… Click to show full abstract

Abstract In this work, SnO2/Au multilayered heterostructures based gas sensors are fabricated to detect CO gas. The Sn/Au multilayer structure was grown by thermal evaporation method followed by oxidation at elevated temperature. The structural characterization of the grown structures was performed by X-ray diffraction (XRD) and the oxidation analysis was performed by X-ray photoelectron spectroscopy (XPS). The electrical properties of SnO2/Au multilayered heterostructures were studied in the temperature range from 25 °C to 300 °C and sensing of gas was performed for CO (100 ppm). A significant enhancement in CO sensing at 300 °C was observed in SnO2/Au multilayered heterostructures than pristine SnO2. The pristine SnO2 sensor displays a sensitivity of 30.81% while it increased to 67.46% in case of SnO2/Au multilayered heterostructures. The change in the sensitivity could be correlated with the oxygen deficiencies as observed in photoluminescence spectra.

Keywords: sno2; multilayered heterostructures; sno2 multilayer; sno2 multilayered; multilayer heterostructure; heterostructure efficient

Journal Title: Materials Chemistry and Physics
Year Published: 2020

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