Title :
Synthesis and characterization of chemically deposited ZnO nanorods for NO2 gas sensing applications
Author :
Vanalakar, Sharad A. ; Vhanalakar, Sagar A. ; Patil, Vithoba L. ; Harale, Namdev S. ; Kale, Bharat B. ; Patil, Pramod S. ; Kim, Jin H.
Author_Institution :
Dept. of Phys., Karmveer Hire Coll., Kolhapur, India
Abstract :
Zinc oxide (ZnO) nanorod arrays were deposited on to the soda-lime glass substrates by wet chemical route using zinc acetate as precursor. The structural and surface morphological properties of the ZnO nanorod arrays (ZNAs) were investigated by X-ray diffraction (XRD), and scanning electron microscopy (SEM) respectively. The XRD pattern revealed wurtzite crystal structures of ZNAs, preferentially orienting in the (002) direction. Depending on the length of nanorod, the intensity of the (002) plane was found to be varied. SEM micrographs show the vertical alignment of ZNAs perpendicular to the substrate and increase in rod length with increase in deposition time. The Gas sensing device was prepared by using ZNAs and tested for NO2 gas at different temperatures, concentrations and size of nanorods. Response increased with gas concentration as well as temperature. It was revealed that ZNAs gas sensor operating at 150 0C temperature could detect NO2 at low concentration (100ppm) with very high sensitivity (90 %).
Keywords :
II-VI semiconductors; X-ray diffraction; crystal structure; gas sensors; nanorods; scanning electron microscopy; surface morphology; zinc compounds; X-ray diffraction; ZnO; chemically deposited nanorods; gas sensing; scanning electron microscopy; soda lime glass substrates; surface morphology; wet chemical route; wurtzite crystal structure; zinc acetate; zinc oxide nanorod arrays; Films; Gas detectors; II-VI semiconductor materials; Nanobioscience; Temperature sensors; Zinc oxide; Gas sensor; ZnO; gas sensitivity; nanorod;
Conference_Titel :
Physics and Technology of Sensors (ISPTS), 2015 2nd International Symposium on
Conference_Location :
Pune
DOI :
10.1109/ISPTS.2015.7220121