The gas sensing properties of functional metal oxide layers depend on multitude parameters, including vacancy concentration, layer morphology and thickness, size and shape of the nano/microstructure, and porosity. Using colloidal tin oxide inks we demonstrate a layer by layer deposition technique to control the thickness and composition of gas sensitive layers. To do this we combine inkjet-printing with colloidal suspensions of SnO2 particles to provide a scalable method to interface microelectromechanical systems (MEMS) with nano particles. The approach may pave the way towards an industry ready integration technique to incorporate gas sensitive quantum dots or hybrid nanomaterials in arbitrary sensing devices
We report on the development of a metal oxide (MOx) sensor prepared by inkjet printing technology on...
This article gives an overview on recent developments in metal-oxide-based gas sensor systems, in pa...
Tin dioxide (SnO2) is widely used as sensing material in metal-oxides gas sensors. In this work we p...
The gas sensing properties of functional metal oxide layers depend on multitude parameters, includin...
The gas sensing properties of functional metal oxide layers depend on multitude parameters, includin...
In this contribution, we propose and demonstrate a scalable and reproducible process to fabricate na...
Integration of nanoparticle synthesis and deposition in micro-machining processes is a mandatory ste...
International audienceScreen-printing technology is a low-cost production process that enables to de...
SnO2 precursor inks with appropriate viscosity and surface tension were prepared using the sol–gel t...
International audienceGas detection is of great interest for many different applications such as dom...
Chapitre: Field-Effect SensorsInternational audienceIn this work, a flexible tin oxide (SnO2) gas se...
Gas sensors are widely used in industrial, medical, domestic and environmental applications. Thermal...
In this work, a flexible tin oxide (SnO2) gas sensor was successfully fabricated by inkjet printing ...
International audienceIn recent years, printed and flexible gas sensors have quickly emerged as an i...
We report a deposition of the tin oxide/hydroxide nanostructured layer by the potentiodynamic method...
We report on the development of a metal oxide (MOx) sensor prepared by inkjet printing technology on...
This article gives an overview on recent developments in metal-oxide-based gas sensor systems, in pa...
Tin dioxide (SnO2) is widely used as sensing material in metal-oxides gas sensors. In this work we p...
The gas sensing properties of functional metal oxide layers depend on multitude parameters, includin...
The gas sensing properties of functional metal oxide layers depend on multitude parameters, includin...
In this contribution, we propose and demonstrate a scalable and reproducible process to fabricate na...
Integration of nanoparticle synthesis and deposition in micro-machining processes is a mandatory ste...
International audienceScreen-printing technology is a low-cost production process that enables to de...
SnO2 precursor inks with appropriate viscosity and surface tension were prepared using the sol–gel t...
International audienceGas detection is of great interest for many different applications such as dom...
Chapitre: Field-Effect SensorsInternational audienceIn this work, a flexible tin oxide (SnO2) gas se...
Gas sensors are widely used in industrial, medical, domestic and environmental applications. Thermal...
In this work, a flexible tin oxide (SnO2) gas sensor was successfully fabricated by inkjet printing ...
International audienceIn recent years, printed and flexible gas sensors have quickly emerged as an i...
We report a deposition of the tin oxide/hydroxide nanostructured layer by the potentiodynamic method...
We report on the development of a metal oxide (MOx) sensor prepared by inkjet printing technology on...
This article gives an overview on recent developments in metal-oxide-based gas sensor systems, in pa...
Tin dioxide (SnO2) is widely used as sensing material in metal-oxides gas sensors. In this work we p...