研究目的
Investigating the effects of different annealing temperatures on the electrical and crystalline properties of TiO2 thin films for EGFET pH-sensing application.
研究成果
TiO2 thin films annealed at 300 °C achieved higher sensitivity and good linearity for pH sensing. The conductivity of TiO2/ITO thin films was found to be proportional with the sensitivity of the sensing membrane. This work reveals the relationship between sensitivity and conductivity of thin films, suggesting optimal annealing conditions for EGFET pH sensors.
研究不足
The study is limited to the effects of annealing temperature on TiO2 thin films for pH sensing. Potential areas for optimization include the exploration of other materials or deposition techniques.
1:Experimental Design and Method Selection:
TiO2 thin films were fabricated on ITO glass substrates using the spin coating technique and annealed at different temperatures. The effects on electrical and crystalline properties were analyzed by I-V measurement and XRD, respectively. Surface morphology was observed by FESEM.
2:Sample Selection and Data Sources:
ITO coated glass substrates were used for TiO2 thin film deposition.
3:List of Experimental Equipment and Materials:
Spin coater, FESEM (JEOL-JSM 7600F), XRD (Rigaku Ultima IV with a Cu Kα), semiconductor parametric device analyzer (Agilent B1500A).
4:Experimental Procedures and Operational Workflow:
TiO2 solution was deposited onto ITO coated glass and annealed at 200 – 600 °C for 20 min. Electrical properties were measured by I-V two point probes, and crystalline properties by XRD.
5:Data Analysis Methods:
The sensitivity and linearity of the TiO2/ITO thin films were calculated from the transfer characteristics.
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