Events8th International Symposium on Sensor Science
Published
with-doi10.3390/I3S2021Dresden-10068 (registering DOI)
This submission belongs to the session S3. Physical Sensors of the event 8th International Symposium on Sensor Science
Published date
17 May, 2021
Citation
Katerina Lazarova, Silviya Boycheva, Marina Vasileva, Denitza Zgureva, Tsvetanka Babeva, Effect of milling time on the sensing properties of fly ash zeolite composite thin films , in Proceedings of 8th International Symposium on Sensor Science, 17 May–28 May 2021, MDPI: Basel, Switzerland, doi: 10.3390/I3S2021Dresden-10068
Share
Email
Facebook
Twitter
LinkedIn

Effect of milling time on the sensing properties of fly ash zeolite composite thin films

Marina Vasileva 3
image
image
1. Institute of Optical Materials and Technologies “Acad. J. Malinowski”, Bulgarian Academy of Sciences, Akad. G. Bonchev str, bl. 109, 1113 Sofia, Bulgaria, Bulgaria
2. Technical University of Sofia, Department of Thermal and Nuclear Power Engineering, Sofia, Bulgaria
3. Institute of Optical Materials and Technologies “Acad. J. Malinowski”, Bulgarian Academy of Sciences
4. Technical University of Sofia, College of Energy and Electronics, Sofia, Bulgaria.
Abstract

Thin films consisting of a sol-gel Nb2O5 matrix doped with zeolite Na-X synthesized from fly ash through ultrasonic-assisted double stage fusion-hydrothermal alkaline activation were deposited by the spin-coating method. In order to improve the optical quality and sensing properties of the thin films zeolites were wet-milled for 60, 120 and 540 seconds prior to incorporation in the film. The liquid adsorption ability of thin films were tested by measuring the reflectance spectra prior to and after exposure to liquid acetone and the change in the reflection coefficient ∆R of the films was calculated. The influence of milling time of zeolites on the sensing and optical properties of the films was studied.

Keywords
optical sensor
sol-gel
Nb2O5
thin films
zeolites
fly ash
Manuscript
Poster
Presentation KLazarova_Sensors_2021.pdf
Compliant Magnetic Sensor Technologies
Study of the effect of bending deformation on the performance of flexible polymer layered humidity sensor