In this work impedance spectroscopy technique was employed in order to characterize the gas-sensing behavior of undoped titanium dioxide (TiO2) polycrystalline thin films. The electrical measurements were performed in a sensor-testing chamber that allows independent control of temperature, pressure, gas composition and flow rate. Frequency measurements, in the range from 40 Hz to 110 MHz, were performed in order to evaluate the gas sensor response of the samples as a function of temperature (50–350 °C) and surrounding atmosphere (vacuum or air at atmospheric pressure). Impedance spectroscopy is a very useful and important technique due to the possibility of using this method for discriminating between grain boundary capacitance (Cgb) and gr...
Analyte sensitivity for gas sensors based on semiconducting metal oxides should be highly dependent ...
International audienceThe influence of phases and phase's boundaries of TiO2 and Ta2O5 in the dielec...
Among metal-oxide gas sensors which change electrical resistive properties upon exposure to target g...
In this work impedance spectroscopy technique was employed in order to characterize the gas-sensing ...
Resistance and capacitance measurements, as a function of frequency, were carried out to analyze an...
Alternating current a.c. measurements enable to understand the physical and chemical processes occur...
The purpose of this work was a comparative electrochemical impedance analysis of the titanium dioxid...
Gas sensors based on Titanium dioxide films have been a subject of interest due to its high sensitiv...
Impedance spectroscopy is essential in understanding the physical and chemical processes that affect...
In the present work, gas sensor was fabricated using nano-Titanium Dioxide (n-TiO2) and nano-Titaniu...
Gas sensors play an irreplaceable role in industry and life. Different types of gas sensors, includi...
Impedance characteristics of 27 nm thick anatase TiO2 films showing bistable resistive switching wer...
Impedance Spectroscopy technique was employed in order to characterize nanostructured powders based ...
International audienceThe electrical properties of pure Anatase are investigated by impedance spectr...
This study presents the technology for prep aring and characterization of titanium oxide thin film...
Analyte sensitivity for gas sensors based on semiconducting metal oxides should be highly dependent ...
International audienceThe influence of phases and phase's boundaries of TiO2 and Ta2O5 in the dielec...
Among metal-oxide gas sensors which change electrical resistive properties upon exposure to target g...
In this work impedance spectroscopy technique was employed in order to characterize the gas-sensing ...
Resistance and capacitance measurements, as a function of frequency, were carried out to analyze an...
Alternating current a.c. measurements enable to understand the physical and chemical processes occur...
The purpose of this work was a comparative electrochemical impedance analysis of the titanium dioxid...
Gas sensors based on Titanium dioxide films have been a subject of interest due to its high sensitiv...
Impedance spectroscopy is essential in understanding the physical and chemical processes that affect...
In the present work, gas sensor was fabricated using nano-Titanium Dioxide (n-TiO2) and nano-Titaniu...
Gas sensors play an irreplaceable role in industry and life. Different types of gas sensors, includi...
Impedance characteristics of 27 nm thick anatase TiO2 films showing bistable resistive switching wer...
Impedance Spectroscopy technique was employed in order to characterize nanostructured powders based ...
International audienceThe electrical properties of pure Anatase are investigated by impedance spectr...
This study presents the technology for prep aring and characterization of titanium oxide thin film...
Analyte sensitivity for gas sensors based on semiconducting metal oxides should be highly dependent ...
International audienceThe influence of phases and phase's boundaries of TiO2 and Ta2O5 in the dielec...
Among metal-oxide gas sensors which change electrical resistive properties upon exposure to target g...