Structural and Ph sensing properties of spin coated Tio₂ thin films with varied sol-gel concentration and with different composite bilayer configuration / Rohanieza Abdul Rahman …[et al.]
Sol-gel spin coated titanium dioxide (TiO2) was applied as the sensing membrane for extended gate field effect transistor (EGFET) pH sensor. The molarity of the TiO2 sol-gel was manipulated to study its influence on the film pH sensing capability. In this study, the sol-gel solution concentration wa...
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my.uitm.ir.488572021-07-16T09:16:05Z http://ir.uitm.edu.my/id/eprint/48857/ Structural and Ph sensing properties of spin coated Tio₂ thin films with varied sol-gel concentration and with different composite bilayer configuration / Rohanieza Abdul Rahman …[et al.] Abdul Rahman, Rohanieza Yusof, Khairul Aimi Zulkefle, Muhammad Al Hadi Abdullah, Wan Fazlida Hanim Kamarudin, Yusuf Electricity and magnetism Apparatus and materials Detectors. Sensors. Sensor networks Sol-gel spin coated titanium dioxide (TiO2) was applied as the sensing membrane for extended gate field effect transistor (EGFET) pH sensor. The molarity of the TiO2 sol-gel was manipulated to study its influence on the film pH sensing capability. In this study, the sol-gel solution concentration was varied from 0.2 M to 1.0 M. It was observed that an increase in molarity used would results in the decrease of pH sensitivity of the TiO2 thin film, in which, the highest pH sensitivity (42.60 mV/pH) was obtained from the film deposited using the lowest concentration. As sol-gel concentration becomes higher, the films becomes thicker, deteriorating its pH sensing performance. FESEM images showed that the variation of the sol-gel concentration influenced the surface morphology. XRD results obtained confirmed the anatase phase existence in all TiO2 samples, excluding that of 0.2 M sample that was amorphous with no peaks. Besides that, composite bilayer sensing structure obtained by incorporating ZnO with TiO2 thin film can produce sensing membrane with higher pH sensitivity than a pure TiO2 sensing membrane. The sensitivity value for TiO2/ZnO and ZnO/TiO2 composite bilayer samples are 57.1 mV/pH and 46.9 mV/pH respectively. Universiti Teknologi MARA 2019-12 Article PeerReviewed text en http://ir.uitm.edu.my/id/eprint/48857/1/48857.pdf ID48857 Abdul Rahman, Rohanieza and Yusof, Khairul Aimi and Zulkefle, Muhammad Al Hadi and Abdullah, Wan Fazlida Hanim and Kamarudin, Yusuf (2019) Structural and Ph sensing properties of spin coated Tio₂ thin films with varied sol-gel concentration and with different composite bilayer configuration / Rohanieza Abdul Rahman …[et al.]. Journal of Electrical and Electronic Systems Research (JEESR), 15. pp. 52-59. ISSN 1985-5389 https://jeesr.uitm.edu.my |
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Electricity and magnetism Apparatus and materials Detectors. Sensors. Sensor networks Abdul Rahman, Rohanieza Yusof, Khairul Aimi Zulkefle, Muhammad Al Hadi Abdullah, Wan Fazlida Hanim Kamarudin, Yusuf Structural and Ph sensing properties of spin coated Tio₂ thin films with varied sol-gel concentration and with different composite bilayer configuration / Rohanieza Abdul Rahman …[et al.] |
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Sol-gel spin coated titanium dioxide (TiO2) was applied as the sensing membrane for extended gate field effect transistor (EGFET) pH sensor. The molarity of the TiO2 sol-gel was manipulated to study its influence on the film pH sensing capability. In this study, the sol-gel solution concentration was varied from 0.2 M to 1.0 M. It was observed that an increase in molarity used would results in the decrease of pH sensitivity of the TiO2 thin film, in which, the highest pH sensitivity (42.60 mV/pH) was obtained from the film deposited using the lowest concentration. As sol-gel concentration becomes higher, the films becomes thicker, deteriorating its pH sensing performance. FESEM images showed that the variation of the sol-gel concentration influenced the surface morphology. XRD results obtained confirmed the anatase phase existence in all TiO2 samples, excluding that of 0.2 M sample that was amorphous with no peaks. Besides that, composite bilayer sensing structure obtained by incorporating ZnO with TiO2 thin film can produce sensing membrane with higher pH sensitivity than a pure TiO2 sensing membrane. The sensitivity value for TiO2/ZnO and ZnO/TiO2 composite bilayer samples are 57.1 mV/pH and 46.9 mV/pH respectively. |
format |
Article |
author |
Abdul Rahman, Rohanieza Yusof, Khairul Aimi Zulkefle, Muhammad Al Hadi Abdullah, Wan Fazlida Hanim Kamarudin, Yusuf |
author_facet |
Abdul Rahman, Rohanieza Yusof, Khairul Aimi Zulkefle, Muhammad Al Hadi Abdullah, Wan Fazlida Hanim Kamarudin, Yusuf |
author_sort |
Abdul Rahman, Rohanieza |
title |
Structural and Ph sensing properties of spin coated Tio₂ thin films with varied sol-gel concentration and with different composite bilayer configuration / Rohanieza Abdul Rahman …[et al.] |
title_short |
Structural and Ph sensing properties of spin coated Tio₂ thin films with varied sol-gel concentration and with different composite bilayer configuration / Rohanieza Abdul Rahman …[et al.] |
title_full |
Structural and Ph sensing properties of spin coated Tio₂ thin films with varied sol-gel concentration and with different composite bilayer configuration / Rohanieza Abdul Rahman …[et al.] |
title_fullStr |
Structural and Ph sensing properties of spin coated Tio₂ thin films with varied sol-gel concentration and with different composite bilayer configuration / Rohanieza Abdul Rahman …[et al.] |
title_full_unstemmed |
Structural and Ph sensing properties of spin coated Tio₂ thin films with varied sol-gel concentration and with different composite bilayer configuration / Rohanieza Abdul Rahman …[et al.] |
title_sort |
structural and ph sensing properties of spin coated tio₂ thin films with varied sol-gel concentration and with different composite bilayer configuration / rohanieza abdul rahman …[et al.] |
publisher |
Universiti Teknologi MARA |
publishDate |
2019 |
url |
http://ir.uitm.edu.my/id/eprint/48857/1/48857.pdf http://ir.uitm.edu.my/id/eprint/48857/ https://jeesr.uitm.edu.my |
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1706960447254560768 |