AbstractNon-stationarity temperature regime allows us to increase sensitivity and selectivity of acetone and ethanol determination. It is possible not only detect 0.1ppm concentration, but also distinguish ethanol from acetone using single MOX-sensor. The multidimensional data were processed with principal components analysis
Nowadays, highly sensitive metal oxide semiconductor gas sensors are exerting a growing important in...
Monitoring volatile organic compounds (VOCs) places a crucial role in environmental pollutants contr...
Human metabolism often results in the emission of many VOCs through the skin. Ethanol is one of vola...
AbstractNon-stationarity temperature regime allows us to increase sensitivity and selectivity of ace...
Acetone is a toxic air pollutant and a key breath marker for non‐invasively monitoring fat metabolis...
Metal oxide (MOx) gas sensors have attracted considerable attention from both scientific and practic...
abstract: In the search for chemical biosensors designed for patient-based physiological application...
This article describes a simple though extremely effective sensor for acetone monitoring in the brea...
An innovative mobile sensor system for breath control in the exhaled air is introduced. In this pape...
A device for the detection and determination of ethanol and acetone wasconstructed, consisting of a ...
Ethanol sensors with effective and selective sensitivity are extensively used by traffic police to d...
Ethanol is a major confounder in gas sensing because of its omnipresence in indoor air and breath fr...
The review describes the technologies used in the field of breath analysis to diagnose and monitor d...
Breath analysis is in use since a long history as a part of medical diagnostics. Idea that some of t...
Nous proposons dans le cadre de ce travail de thèse, une nouvelle approche de la détection non invas...
Nowadays, highly sensitive metal oxide semiconductor gas sensors are exerting a growing important in...
Monitoring volatile organic compounds (VOCs) places a crucial role in environmental pollutants contr...
Human metabolism often results in the emission of many VOCs through the skin. Ethanol is one of vola...
AbstractNon-stationarity temperature regime allows us to increase sensitivity and selectivity of ace...
Acetone is a toxic air pollutant and a key breath marker for non‐invasively monitoring fat metabolis...
Metal oxide (MOx) gas sensors have attracted considerable attention from both scientific and practic...
abstract: In the search for chemical biosensors designed for patient-based physiological application...
This article describes a simple though extremely effective sensor for acetone monitoring in the brea...
An innovative mobile sensor system for breath control in the exhaled air is introduced. In this pape...
A device for the detection and determination of ethanol and acetone wasconstructed, consisting of a ...
Ethanol sensors with effective and selective sensitivity are extensively used by traffic police to d...
Ethanol is a major confounder in gas sensing because of its omnipresence in indoor air and breath fr...
The review describes the technologies used in the field of breath analysis to diagnose and monitor d...
Breath analysis is in use since a long history as a part of medical diagnostics. Idea that some of t...
Nous proposons dans le cadre de ce travail de thèse, une nouvelle approche de la détection non invas...
Nowadays, highly sensitive metal oxide semiconductor gas sensors are exerting a growing important in...
Monitoring volatile organic compounds (VOCs) places a crucial role in environmental pollutants contr...
Human metabolism often results in the emission of many VOCs through the skin. Ethanol is one of vola...