Localized growth of SnO2 nanowires on top of CMOS compatible micromembranes that incorporate a buried heater and prepatterned interdigitated electrodes has been achieved that presents the advantage that it allows to easily and directly integrate the advantageous properties of quasi-one dimensional structures in an advanced electronic device by a Vapor Liquid Solid (VLS) mechanism. A NWs based sensor of this type is characterized as a low power gas sensor towards NH3 at different temperatures. Stable and reproducible response is obtained, that allows detecting concentrations below the time-weighted average exposure limit for 8 h
The analysis of ambient (home, office, outdoor) atmosphere in order to check the presence of dangero...
The H2S gas sensing characterization of gas sensors based on the SnO2 nanowires network has been rep...
A simple thermal evaporation method is presented for the growth of crystalline SnO2 nanowires at a l...
AbstractLocalized growth of SnO2 nanowires on top of CMOS compatible micromembranes that incorporate...
Localized growth of SnO2 nanowires on top of CMOS compatible micromembranes that incorporate a burie...
SnO2 NWs networks on heated micromembranes have been characterized as ammonia sensors. The approach ...
With the growth of nanotechnology during the last few decades, development of novel materials, devic...
Developing metal oxide gas sensors for internet-of-things (IoT) and portable applications require lo...
We have developed highly sensitive, low-power gas sensors through the novel integration method of po...
Tin dioxide nanowires have been grown by thermal oxidation of sputtered thin films by means of a VLS...
AbstractSnO2 chemical sensors were fabricated by two different methods. The first one was based on c...
AbstractSnO2 chemical sensors were fabricated by two different methods. The first one was based on c...
We fabricated a nanowire-based gas sensor using a simple method of growing SnO(2) nanowires bridging...
NO2 gas is a highly toxic gas and emitted from vehicles such as motocycles and internal engine trans...
AbstractTo date, studies on the interactions between ammonia and monocrystalline SnO2 surface have b...
The analysis of ambient (home, office, outdoor) atmosphere in order to check the presence of dangero...
The H2S gas sensing characterization of gas sensors based on the SnO2 nanowires network has been rep...
A simple thermal evaporation method is presented for the growth of crystalline SnO2 nanowires at a l...
AbstractLocalized growth of SnO2 nanowires on top of CMOS compatible micromembranes that incorporate...
Localized growth of SnO2 nanowires on top of CMOS compatible micromembranes that incorporate a burie...
SnO2 NWs networks on heated micromembranes have been characterized as ammonia sensors. The approach ...
With the growth of nanotechnology during the last few decades, development of novel materials, devic...
Developing metal oxide gas sensors for internet-of-things (IoT) and portable applications require lo...
We have developed highly sensitive, low-power gas sensors through the novel integration method of po...
Tin dioxide nanowires have been grown by thermal oxidation of sputtered thin films by means of a VLS...
AbstractSnO2 chemical sensors were fabricated by two different methods. The first one was based on c...
AbstractSnO2 chemical sensors were fabricated by two different methods. The first one was based on c...
We fabricated a nanowire-based gas sensor using a simple method of growing SnO(2) nanowires bridging...
NO2 gas is a highly toxic gas and emitted from vehicles such as motocycles and internal engine trans...
AbstractTo date, studies on the interactions between ammonia and monocrystalline SnO2 surface have b...
The analysis of ambient (home, office, outdoor) atmosphere in order to check the presence of dangero...
The H2S gas sensing characterization of gas sensors based on the SnO2 nanowires network has been rep...
A simple thermal evaporation method is presented for the growth of crystalline SnO2 nanowires at a l...