Characterization of Porous CuO Films for H2S Gas Sensors

Materials (Basel). 2022 Oct 18;15(20):7270. doi: 10.3390/ma15207270.

Abstract

Using a thermal evaporator, various porous Cu films were deposited according to the deposition pressure. CuO films were formed by post heat treatment in the air. Changes in morphological and structural characteristics of films were analyzed using field-emission scanning electron microscopy (FE-SEM) and X-ray diffraction (XRD). Relative density and porosity were quantitatively calculated. CuO films with various pores ranging from 39.4 to 95.2% were successfully manufactured and were applied as gas sensors for H2S detection on interdigitated electrode (IDE) substrate. Resistance change was monitored at 325 °C and an increase in porosity of the film improved the sensor performance. The CuO-10 gas sensor with a high porosity of 95.2% showed a relatively high response (2.7) and a fast recovery time (514 s) for H2S 1.5 ppm. It is confirmed that the porosity of the CuO detection layer had a significant effect on response and recovery time.

Keywords: H2S detection; copper oxide; gas sensor; porosity; porous nanoparticle; thermal evaporation.

Grants and funding

This research was funded by the Big Issue Program of the Korea Institute of Industrial Technology (KITECH) [Project No. PEO22030].