This paper and its companion (Part I) are devoted to the development and to the experimental verification of three simple gray-box models able to predict the behavior of some commercial thick film SnO2-based sensors in presence of oxygen and a reducing gas (CO). In this paper the models developed in Part I are applied to different commercial tin oxide sensors, and experimental results are discussed in order to gain a deeper insight into the sensor behavior
Impedance spectroscopy measurements on SnO2 thick films were carried out in an air atmosphere and fo...
In the last decades a large amount of research work has been devoted to understanding the sensing m...
Metal oxide based semiconductor gas sensors have attracted attention due to their superior propertie...
This paper and its companion (Part I) are devoted to the development and to the experimental verific...
Metal oxide gas sensors (MOXs) are widely used in olfactory electronic systems for their high sensit...
There exists a strong interest in developing simplified models able to predict the SnO2 sensor respo...
International audienceThe variations of the electrical response of SnO2 thick film sensors (10-80 µm...
In this work a model able to predict the dynamic response of conductimetric SnO2 sensors in presence...
In this work, a set of models able to predict the behavior of tin oxide (SnO2) sensors during chemic...
A new theoretical model has been proposed in this analysis to explain the experimentally observed ga...
AbstractThe conduction mechanism in polycrystalline Pt doped SnO2 thick films is investigated by mea...
The materials exploited for the development of gas conductometric sensors are often n-type semicondu...
A new theoretical model has been proposed in this analysis to explain the experimentally observed ga...
AbstractDC electrical resistance measurements on undoped polycrystalline SnO2 thick film sensing lay...
Transmission line modelling (TLM) techniques were used to study the sensitivity behaviour to CO and ...
Impedance spectroscopy measurements on SnO2 thick films were carried out in an air atmosphere and fo...
In the last decades a large amount of research work has been devoted to understanding the sensing m...
Metal oxide based semiconductor gas sensors have attracted attention due to their superior propertie...
This paper and its companion (Part I) are devoted to the development and to the experimental verific...
Metal oxide gas sensors (MOXs) are widely used in olfactory electronic systems for their high sensit...
There exists a strong interest in developing simplified models able to predict the SnO2 sensor respo...
International audienceThe variations of the electrical response of SnO2 thick film sensors (10-80 µm...
In this work a model able to predict the dynamic response of conductimetric SnO2 sensors in presence...
In this work, a set of models able to predict the behavior of tin oxide (SnO2) sensors during chemic...
A new theoretical model has been proposed in this analysis to explain the experimentally observed ga...
AbstractThe conduction mechanism in polycrystalline Pt doped SnO2 thick films is investigated by mea...
The materials exploited for the development of gas conductometric sensors are often n-type semicondu...
A new theoretical model has been proposed in this analysis to explain the experimentally observed ga...
AbstractDC electrical resistance measurements on undoped polycrystalline SnO2 thick film sensing lay...
Transmission line modelling (TLM) techniques were used to study the sensitivity behaviour to CO and ...
Impedance spectroscopy measurements on SnO2 thick films were carried out in an air atmosphere and fo...
In the last decades a large amount of research work has been devoted to understanding the sensing m...
Metal oxide based semiconductor gas sensors have attracted attention due to their superior propertie...