Formaldehyde is a volatile organic compound that is widely used in textiles, paper, wood composites, and household materials. Formaldehyde will continuously outgas from manufactured wood products such as furniture, with adverse health effects resulting from prolonged low-level exposure. New, microfabricated sensors for formaldehyde have been developed to meet the need for portable, low-power gas detection. This paper reviews recent work including silicon microhotplates for metal oxide-based detection, enzyme-based electrochemical sensors, and nanowire-based sensors. This paper also investigates the promise of polymer-based sensors for low-temperature, low-power operation
This work demonstrates a printable blending material, i.e., reduced graphene oxide (RGO) mixed with ...
International audienceIn this work, the authors present a new approach to detect and discriminate su...
International audienceA hand-held formaldehyde (HCHO) gas detector has been developed. This fluoresc...
Formaldehyde has been regarded as a common indoor pollutant and does great harm to human health, whi...
A novel micro formaldehyde gas sensor with a sputtered NiO thin film integrated with a micro hotplat...
Formaldehyde is a poisonous and harmful gas, which is ubiquitous in our daily life. Long-term exposu...
Despite the improvement in sensing technologies, detection of small and highly reactive molecules li...
Many methods based on spectrophotometric, fluorometric, piezoresistive, amperometric or conductive m...
In this study, the proposed sensor integrates a sensing layer, a heating device, and electrodes on t...
A micro-gas sensor is fabricated based on a micro-hotplate (MHP) with micromachining technology. The...
In this study, the proposed sensor integrates a sensing layer, a heating device, and electrodes on t...
Formaldehyde is a carcinogenic indoor air pollutant emitted from common wood-based materials. Low-co...
Special issue. Selected Papers From the 10th Annual NSTI Nanotech Conference Santa Clara Convention ...
International audienceFormaldehyde is a carcinogenic volatile organic compound that is largely used ...
Formaldehyde is a carcinogenic indoor air pollutant emitted from wood-based furniture, building mate...
This work demonstrates a printable blending material, i.e., reduced graphene oxide (RGO) mixed with ...
International audienceIn this work, the authors present a new approach to detect and discriminate su...
International audienceA hand-held formaldehyde (HCHO) gas detector has been developed. This fluoresc...
Formaldehyde has been regarded as a common indoor pollutant and does great harm to human health, whi...
A novel micro formaldehyde gas sensor with a sputtered NiO thin film integrated with a micro hotplat...
Formaldehyde is a poisonous and harmful gas, which is ubiquitous in our daily life. Long-term exposu...
Despite the improvement in sensing technologies, detection of small and highly reactive molecules li...
Many methods based on spectrophotometric, fluorometric, piezoresistive, amperometric or conductive m...
In this study, the proposed sensor integrates a sensing layer, a heating device, and electrodes on t...
A micro-gas sensor is fabricated based on a micro-hotplate (MHP) with micromachining technology. The...
In this study, the proposed sensor integrates a sensing layer, a heating device, and electrodes on t...
Formaldehyde is a carcinogenic indoor air pollutant emitted from common wood-based materials. Low-co...
Special issue. Selected Papers From the 10th Annual NSTI Nanotech Conference Santa Clara Convention ...
International audienceFormaldehyde is a carcinogenic volatile organic compound that is largely used ...
Formaldehyde is a carcinogenic indoor air pollutant emitted from wood-based furniture, building mate...
This work demonstrates a printable blending material, i.e., reduced graphene oxide (RGO) mixed with ...
International audienceIn this work, the authors present a new approach to detect and discriminate su...
International audienceA hand-held formaldehyde (HCHO) gas detector has been developed. This fluoresc...