A glass substrate coated with ZnO nanorods via a hydrothermal method for formaldehyde vapor sensing is reported. The proposed sensor device was characterized against formaldehyde vapor concentrations varying from 1% to 5% with a reference point as 0% (pure water) at room temperature. A significant sensing response was observed where the output voltage reduced by 0.0856 V via scattering effect by ZnO nanorods upon exposure to the maximum tested concentration (5%). The sensitivity and linearity of the sensing response were recorded to be approximate values of -0.0168 V/% and 98.06% correspondingly. The sensor device was found to have good measurement stability in measuring as low as 1% of concentration for a prolonged time of 600 s. This prop...
Real-time detection of formaldehyde in the atmosphere remains challenging. The available gaseous for...
Many methods based on spectrophotometric, fluorometric, piezoresistive, amperometric or conductive m...
International audienceIn this work, the authors present a new approach to detect and discriminate su...
A glass substrate coated with ZnO nanorods via a hydrothermal method for formaldehyde vapor sensing ...
A proposed formaldehyde (CH2O) sensor is fabricated by exploiting evanescent wave on a glass surface...
A proposed formaldehyde (CH2O) sensor is fabricated by exploiting evanescent wave on a glass surface...
A simple and practical cost-effective integrated zinc oxide (ZnO) nanorods coated glass substrate se...
AbstractA hand-held formaldehyde (HCHO) gas detector has been developed. This fluorescence-based sys...
International audienceA hand-held formaldehyde (HCHO) gas detector has been developed. This fluoresc...
Despite the improvement in sensing technologies, detection of small and highly reactive molecules li...
A light activated miniature formaldehyde sensor working at room temperature is fabricated by CdSO4 m...
Monitoring volatile organic compounds (VOCs) is necessary for indoor and outdoor environments due to...
AbstractSemiconductor type gas sensors based on aluminum-doped zinc oxide with under 50nm particle s...
International audienceThe development of a very sensitive and selective chemical sensor of formaldeh...
Formaldehyde has been regarded as a common indoor pollutant and does great harm to human health, whi...
Real-time detection of formaldehyde in the atmosphere remains challenging. The available gaseous for...
Many methods based on spectrophotometric, fluorometric, piezoresistive, amperometric or conductive m...
International audienceIn this work, the authors present a new approach to detect and discriminate su...
A glass substrate coated with ZnO nanorods via a hydrothermal method for formaldehyde vapor sensing ...
A proposed formaldehyde (CH2O) sensor is fabricated by exploiting evanescent wave on a glass surface...
A proposed formaldehyde (CH2O) sensor is fabricated by exploiting evanescent wave on a glass surface...
A simple and practical cost-effective integrated zinc oxide (ZnO) nanorods coated glass substrate se...
AbstractA hand-held formaldehyde (HCHO) gas detector has been developed. This fluorescence-based sys...
International audienceA hand-held formaldehyde (HCHO) gas detector has been developed. This fluoresc...
Despite the improvement in sensing technologies, detection of small and highly reactive molecules li...
A light activated miniature formaldehyde sensor working at room temperature is fabricated by CdSO4 m...
Monitoring volatile organic compounds (VOCs) is necessary for indoor and outdoor environments due to...
AbstractSemiconductor type gas sensors based on aluminum-doped zinc oxide with under 50nm particle s...
International audienceThe development of a very sensitive and selective chemical sensor of formaldeh...
Formaldehyde has been regarded as a common indoor pollutant and does great harm to human health, whi...
Real-time detection of formaldehyde in the atmosphere remains challenging. The available gaseous for...
Many methods based on spectrophotometric, fluorometric, piezoresistive, amperometric or conductive m...
International audienceIn this work, the authors present a new approach to detect and discriminate su...