International audienceWe present a new organometallic approach for the preparation of nanostructured SnO2 gas sensitive layer. The deposited sensitive layer on a silicon device shows high response to 100 ppm of CO and C3H8. In order to improve the sensor selectivity we have implemented a catalytic filter material in a cap placed just above the sensing device. The catalytic filter is made of zinc oxide supported gold nanoparticles (Au@ZnO) prepared by deposition-precipitation by urea (DPU) method. This catalytic filter, operated at room temperature and under humid atmosphere (HR 50%), allowed to selectively eliminate the sensor response under 100 ppm of CO, whereas the sensor always responds to 100 ppm of C3H8
International audienceThe development of high sensitivity and selectivity MOS(metal oxide semiconduc...
International audienceGas detection is of great interest for many different applications such as dom...
International audienceThe development of high sensitivity and selectivity MOS(metal oxide semiconduc...
International audienceWe present a new organometallic approach for the preparation of nanostructured...
International audienceWe present a new organometallic approach for the preparation of nanostructured...
AbstractWe present a new organometallic approach for the preparation of nanostructured SnO2 gas sens...
AbstractWe present a new organometallic approach for the preparation of nanostructured SnO2 gas sens...
International audienceAir quality control in closed spaces (e.g. automotive cabin, transportation an...
International audienceAir quality control in closed spaces (e.g. automotive cabin, transportation an...
International audienceAir quality control in closed spaces (e.g. automotive cabin, transportation an...
This paper presents an approach to improving the selectivity of gas sensors based on nanocrystalline...
International audienceSemiconducting metal oxide sensors are one of the most widely used gas sensors...
International audienceSemiconducting metal oxide sensors are one of the most widely used gas sensors...
We have fabricated multiple networked SnO2 nanowires and subsequently decorated-them with uniformly ...
International audienceThe development of high sensitivity and selectivity MOS(metal oxide semiconduc...
International audienceThe development of high sensitivity and selectivity MOS(metal oxide semiconduc...
International audienceGas detection is of great interest for many different applications such as dom...
International audienceThe development of high sensitivity and selectivity MOS(metal oxide semiconduc...
International audienceWe present a new organometallic approach for the preparation of nanostructured...
International audienceWe present a new organometallic approach for the preparation of nanostructured...
AbstractWe present a new organometallic approach for the preparation of nanostructured SnO2 gas sens...
AbstractWe present a new organometallic approach for the preparation of nanostructured SnO2 gas sens...
International audienceAir quality control in closed spaces (e.g. automotive cabin, transportation an...
International audienceAir quality control in closed spaces (e.g. automotive cabin, transportation an...
International audienceAir quality control in closed spaces (e.g. automotive cabin, transportation an...
This paper presents an approach to improving the selectivity of gas sensors based on nanocrystalline...
International audienceSemiconducting metal oxide sensors are one of the most widely used gas sensors...
International audienceSemiconducting metal oxide sensors are one of the most widely used gas sensors...
We have fabricated multiple networked SnO2 nanowires and subsequently decorated-them with uniformly ...
International audienceThe development of high sensitivity and selectivity MOS(metal oxide semiconduc...
International audienceThe development of high sensitivity and selectivity MOS(metal oxide semiconduc...
International audienceGas detection is of great interest for many different applications such as dom...
International audienceThe development of high sensitivity and selectivity MOS(metal oxide semiconduc...