Humidity sensing properties of nanocrystalline pseudobrookite (Fe2TiO5) based thick films
Аутори
Nikolić, Maria Vesna
Vasiljević, Zorka

Luković, Miloljub

Pavlović, Vera P.

Vujancevic, J.
Radovanović, M.
Krstić, Jugoslav

Vlahovic, B.
Pavlović, Vladimir B.

Чланак у часопису (Рецензирана верзија)
Метаподаци
Приказ свих података о документуАпстракт
Pseudobrookite based nanopowder was obtained by solid state synthesis of starting hematite and anatase nanopowders in the weight ratio 55:45. Structural and morphological properties were analyzed using X-ray diffraction (XRD), BET, X-ray photoelectron spectroscopy (XPS), Raman spectroscopy, UV/Vis diffuse reflectance spectroscopy, Field emission scanning electron microscopy (FESEM) and Transmission electron microscopy (TEM) confirming the formation of nanocrystalline pseudobrookite. The obtained powder was mixed with a binder (ethyl cellulose), dispersant (α-terpinol) and adhesion agents (acetic acid and distilled water) to obtain a thick film paste. It was screen printed on alumina substrate with interdigitated PdAg electrodes and fired at 600 °C for 30 min. Formation of a porous nanocrystalline thick film structure was shown using Scanning electron microscopy (SEM), while Hall measurements enabled determination of carrier mobility. Change of impedance response in the frequency range ...42 Hz–1 MHz with humidity was analyzed at room temperature (25 °C) and 50 °C in the relative humidity range 30–90% and 40–90%, respectively. At 42 Hz, and room temperature the impedance reduced ∼28 times, while at 50 °C it reduced ∼147 times in the relative humidity range 40–90%. The sensor showed rapid response (16 s) and relatively low hysteresis (8.39% at 25 °C and 2.64% at 50 °C) showing that this is a promising material for application in humidity sensing.
Кључне речи:
Fe2TiO5 / Humidity sensor / Pseudobrookite / Thick filmИзвор:
Sensors and Actuators, B: Chemical, 2018, 277, 654-664Издавач:
- Elsevier
Финансирање / пројекти:
- 0-3D наноструктуре за примену у електроници и обновљивим изворима енергије: синтеза, карактеризација и процесирање (RS-45007)
- Литијум-јон батерије и горивне ћелије-истраживање и развој (RS-45014)
Напомена:
- This is the peer-reviewed version of the article: Nikolic, M.V., Vasiljevic, Z.Z., Lukovic, M.D., Pavlovic, V.P., Vujancevic, J., Radovanovic, M., Krstic, J.B., Vlahovic, B., Pavlovic, V.B., 2018. Humidity sensing properties of nanocrystalline pseudobrookite (Fe2TiO5) based thick films. Sensors and Actuators B: Chemical 277, 654–664. https://doi.org/10.1016/j.snb.2018.09.063
- The published version: https://cer.ihtm.bg.ac.rs/handle/123456789/2414
DOI: 10.1016/j.snb.2018.09.063
ISSN: 0925-4005
WoS: 000453066700081
Scopus: 2-s2.0-85053789141
Институција/група
IHTMTY - JOUR AU - Nikolić, Maria Vesna AU - Vasiljević, Zorka AU - Luković, Miloljub AU - Pavlović, Vera P. AU - Vujancevic, J. AU - Radovanović, M. AU - Krstić, Jugoslav AU - Vlahovic, B. AU - Pavlović, Vladimir B. PY - 2018 UR - https://cer.ihtm.bg.ac.rs/handle/123456789/4277 AB - Pseudobrookite based nanopowder was obtained by solid state synthesis of starting hematite and anatase nanopowders in the weight ratio 55:45. Structural and morphological properties were analyzed using X-ray diffraction (XRD), BET, X-ray photoelectron spectroscopy (XPS), Raman spectroscopy, UV/Vis diffuse reflectance spectroscopy, Field emission scanning electron microscopy (FESEM) and Transmission electron microscopy (TEM) confirming the formation of nanocrystalline pseudobrookite. The obtained powder was mixed with a binder (ethyl cellulose), dispersant (α-terpinol) and adhesion agents (acetic acid and distilled water) to obtain a thick film paste. It was screen printed on alumina substrate with interdigitated PdAg electrodes and fired at 600 °C for 30 min. Formation of a porous nanocrystalline thick film structure was shown using Scanning electron microscopy (SEM), while Hall measurements enabled determination of carrier mobility. Change of impedance response in the frequency range 42 Hz–1 MHz with humidity was analyzed at room temperature (25 °C) and 50 °C in the relative humidity range 30–90% and 40–90%, respectively. At 42 Hz, and room temperature the impedance reduced ∼28 times, while at 50 °C it reduced ∼147 times in the relative humidity range 40–90%. The sensor showed rapid response (16 s) and relatively low hysteresis (8.39% at 25 °C and 2.64% at 50 °C) showing that this is a promising material for application in humidity sensing. PB - Elsevier T2 - Sensors and Actuators, B: Chemical T1 - Humidity sensing properties of nanocrystalline pseudobrookite (Fe2TiO5) based thick films VL - 277 SP - 654 EP - 664 DO - 10.1016/j.snb.2018.09.063 ER -
@article{ author = "Nikolić, Maria Vesna and Vasiljević, Zorka and Luković, Miloljub and Pavlović, Vera P. and Vujancevic, J. and Radovanović, M. and Krstić, Jugoslav and Vlahovic, B. and Pavlović, Vladimir B.", year = "2018", abstract = "Pseudobrookite based nanopowder was obtained by solid state synthesis of starting hematite and anatase nanopowders in the weight ratio 55:45. Structural and morphological properties were analyzed using X-ray diffraction (XRD), BET, X-ray photoelectron spectroscopy (XPS), Raman spectroscopy, UV/Vis diffuse reflectance spectroscopy, Field emission scanning electron microscopy (FESEM) and Transmission electron microscopy (TEM) confirming the formation of nanocrystalline pseudobrookite. The obtained powder was mixed with a binder (ethyl cellulose), dispersant (α-terpinol) and adhesion agents (acetic acid and distilled water) to obtain a thick film paste. It was screen printed on alumina substrate with interdigitated PdAg electrodes and fired at 600 °C for 30 min. Formation of a porous nanocrystalline thick film structure was shown using Scanning electron microscopy (SEM), while Hall measurements enabled determination of carrier mobility. Change of impedance response in the frequency range 42 Hz–1 MHz with humidity was analyzed at room temperature (25 °C) and 50 °C in the relative humidity range 30–90% and 40–90%, respectively. At 42 Hz, and room temperature the impedance reduced ∼28 times, while at 50 °C it reduced ∼147 times in the relative humidity range 40–90%. The sensor showed rapid response (16 s) and relatively low hysteresis (8.39% at 25 °C and 2.64% at 50 °C) showing that this is a promising material for application in humidity sensing.", publisher = "Elsevier", journal = "Sensors and Actuators, B: Chemical", title = "Humidity sensing properties of nanocrystalline pseudobrookite (Fe2TiO5) based thick films", volume = "277", pages = "654-664", doi = "10.1016/j.snb.2018.09.063" }
Nikolić, M. V., Vasiljević, Z., Luković, M., Pavlović, V. P., Vujancevic, J., Radovanović, M., Krstić, J., Vlahovic, B.,& Pavlović, V. B.. (2018). Humidity sensing properties of nanocrystalline pseudobrookite (Fe2TiO5) based thick films. in Sensors and Actuators, B: Chemical Elsevier., 277, 654-664. https://doi.org/10.1016/j.snb.2018.09.063
Nikolić MV, Vasiljević Z, Luković M, Pavlović VP, Vujancevic J, Radovanović M, Krstić J, Vlahovic B, Pavlović VB. Humidity sensing properties of nanocrystalline pseudobrookite (Fe2TiO5) based thick films. in Sensors and Actuators, B: Chemical. 2018;277:654-664. doi:10.1016/j.snb.2018.09.063 .
Nikolić, Maria Vesna, Vasiljević, Zorka, Luković, Miloljub, Pavlović, Vera P., Vujancevic, J., Radovanović, M., Krstić, Jugoslav, Vlahovic, B., Pavlović, Vladimir B., "Humidity sensing properties of nanocrystalline pseudobrookite (Fe2TiO5) based thick films" in Sensors and Actuators, B: Chemical, 277 (2018):654-664, https://doi.org/10.1016/j.snb.2018.09.063 . .