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Humidity sensing potential of Fe2TiO5-pseudobrookite

Authorized Users Only
2018
Authors
Nikolić, Maria Vesna
Luković, Miloljub
Vasiljević, Zorka Z
Labus, Nebojša J.
Aleksić, Obrad
Article (Published version)
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Abstract
Bulk samples of pseudobrookite with an orthorhombic crystal structure were prepared by sintering a mixture of starting hematite and anatase nano powders in the weight ratio 60:40 at three different sintering temperatures (950, 1050 and 1150 degrees C) resulting in different microstructures determined by SEM analysis. Humidity sensing properties of pseudobrookite were investigated by measuring changes in electrical properties at operating temperatures of 20, 40 and 60 degrees C in the frequency range 100 Hz-100 kHz in the relative humidity range 30-90% in a climatic chamber. At 100 Hz, and 20 degrees C the impedance of pseudobrookite sintered at 1150 degrees C reduced over 5 times in the humidity range 40-90%, and 7 times at 60 degrees C for pseudobrookite sintered at 950 degrees C. Detailed analysis of dielectric properties showed that the dielectric constant increased noticeably with increase in humidity at low frequencies. Electrical conductivity change with frequency followed the Jo...nscher power law, and increased with increase in relative humidity. The determined frequency constant reduced with increase in sample temperature and increase in relative humidity. The conduction mechanism can be explained using the correlated barrier hopping model. Analysis of complex impedance using an equivalent circuit showed the dominant influence of grain boundaries. Low hysteresis (3.6 and 2.99%) was obtained in the 40-90% humidity range at room temperature (25 degrees C) for pseudobrookite sintered at 950 and 1150 degrees C.

Keywords:
Fe2TiO5 / humidity sensing
Source:
Journal of Materials Science-Materials in Electronics, 2018, 29, 11, 9227-9238
Publisher:
  • Springer, Dordrecht
Funding / projects:
  • Zero- to Three-Dimensional Nanostructures for Application in Electronics and Renewable Energy Sources: Synthesis, Characterization and Processing (RS-45007)

DOI: 10.1007/s10854-018-8951-1

ISSN: 0957-4522

WoS: 000432326800041

Scopus: 2-s2.0-85044227131
[ Google Scholar ]
13
10
URI
http://rimsi.imsi.bg.ac.rs/handle/123456789/1144
Collections
  • Radovi istraživača / Researchers’ publications
Institution/Community
Institut za multidisciplinarna istraživanja
TY  - JOUR
AU  - Nikolić, Maria Vesna
AU  - Luković, Miloljub
AU  - Vasiljević, Zorka Z
AU  - Labus, Nebojša J.
AU  - Aleksić, Obrad
PY  - 2018
UR  - http://rimsi.imsi.bg.ac.rs/handle/123456789/1144
AB  - Bulk samples of pseudobrookite with an orthorhombic crystal structure were prepared by sintering a mixture of starting hematite and anatase nano powders in the weight ratio 60:40 at three different sintering temperatures (950, 1050 and 1150 degrees C) resulting in different microstructures determined by SEM analysis. Humidity sensing properties of pseudobrookite were investigated by measuring changes in electrical properties at operating temperatures of 20, 40 and 60 degrees C in the frequency range 100 Hz-100 kHz in the relative humidity range 30-90% in a climatic chamber. At 100 Hz, and 20 degrees C the impedance of pseudobrookite sintered at 1150 degrees C reduced over 5 times in the humidity range 40-90%, and 7 times at 60 degrees C for pseudobrookite sintered at 950 degrees C. Detailed analysis of dielectric properties showed that the dielectric constant increased noticeably with increase in humidity at low frequencies. Electrical conductivity change with frequency followed the Jonscher power law, and increased with increase in relative humidity. The determined frequency constant reduced with increase in sample temperature and increase in relative humidity. The conduction mechanism can be explained using the correlated barrier hopping model. Analysis of complex impedance using an equivalent circuit showed the dominant influence of grain boundaries. Low hysteresis (3.6 and 2.99%) was obtained in the 40-90% humidity range at room temperature (25 degrees C) for pseudobrookite sintered at 950 and 1150 degrees C.
PB  - Springer, Dordrecht
T2  - Journal of Materials Science-Materials in Electronics
T1  - Humidity sensing potential of Fe2TiO5-pseudobrookite
EP  - 9238
IS  - 11
SP  - 9227
VL  - 29
DO  - 10.1007/s10854-018-8951-1
ER  - 
@article{
author = "Nikolić, Maria Vesna and Luković, Miloljub and Vasiljević, Zorka Z and Labus, Nebojša J. and Aleksić, Obrad",
year = "2018",
abstract = "Bulk samples of pseudobrookite with an orthorhombic crystal structure were prepared by sintering a mixture of starting hematite and anatase nano powders in the weight ratio 60:40 at three different sintering temperatures (950, 1050 and 1150 degrees C) resulting in different microstructures determined by SEM analysis. Humidity sensing properties of pseudobrookite were investigated by measuring changes in electrical properties at operating temperatures of 20, 40 and 60 degrees C in the frequency range 100 Hz-100 kHz in the relative humidity range 30-90% in a climatic chamber. At 100 Hz, and 20 degrees C the impedance of pseudobrookite sintered at 1150 degrees C reduced over 5 times in the humidity range 40-90%, and 7 times at 60 degrees C for pseudobrookite sintered at 950 degrees C. Detailed analysis of dielectric properties showed that the dielectric constant increased noticeably with increase in humidity at low frequencies. Electrical conductivity change with frequency followed the Jonscher power law, and increased with increase in relative humidity. The determined frequency constant reduced with increase in sample temperature and increase in relative humidity. The conduction mechanism can be explained using the correlated barrier hopping model. Analysis of complex impedance using an equivalent circuit showed the dominant influence of grain boundaries. Low hysteresis (3.6 and 2.99%) was obtained in the 40-90% humidity range at room temperature (25 degrees C) for pseudobrookite sintered at 950 and 1150 degrees C.",
publisher = "Springer, Dordrecht",
journal = "Journal of Materials Science-Materials in Electronics",
title = "Humidity sensing potential of Fe2TiO5-pseudobrookite",
pages = "9238-9227",
number = "11",
volume = "29",
doi = "10.1007/s10854-018-8951-1"
}
Nikolić, M. V., Luković, M., Vasiljević, Z. Z., Labus, N. J.,& Aleksić, O.. (2018). Humidity sensing potential of Fe2TiO5-pseudobrookite. in Journal of Materials Science-Materials in Electronics
Springer, Dordrecht., 29(11), 9227-9238.
https://doi.org/10.1007/s10854-018-8951-1
Nikolić MV, Luković M, Vasiljević ZZ, Labus NJ, Aleksić O. Humidity sensing potential of Fe2TiO5-pseudobrookite. in Journal of Materials Science-Materials in Electronics. 2018;29(11):9227-9238.
doi:10.1007/s10854-018-8951-1 .
Nikolić, Maria Vesna, Luković, Miloljub, Vasiljević, Zorka Z, Labus, Nebojša J., Aleksić, Obrad, "Humidity sensing potential of Fe2TiO5-pseudobrookite" in Journal of Materials Science-Materials in Electronics, 29, no. 11 (2018):9227-9238,
https://doi.org/10.1007/s10854-018-8951-1 . .

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