We describe a belt-mountable prototype instrument containing a gas chromatographic microsystem (μGC) and demonstrate its capability for near-real-time recognition and quantification of volatile organic compounds (VOCs) in moderately complex mixtures at concentrations encountered in industrial workplace environments. The μGC comprises three discrete, Si/Pyrex microfabricated chips: a dual-adsorbent micropreconcentrator–focuser for VOC capture and injection; a wall-coated microcolumn with thin-metal heaters and temperature sensors for temperature-programmed separations; and an array of four microchemiresistors with thiolate-monolayer-protected-Au-nanoparticle interface films for detection and recognition–discrimination. The battery-powered μG...
This dissertation describes the development of prototype instrumentation containing gas chromatograp...
Field measurements of volatile organic compounds (VOCs) are important in a range of disciplines incl...
New technologies offering sensitive, selective, and near-real-time identification and quantification...
Current methods for evaluating worker exposures to mixtures of airborne volatile organic compounds (...
The capability to analyze complex mixtures of airborne volatile organic compounds (VOCs) at low conc...
Micromachined gas-chromatographic (GC) components in combination with high sensitivity MOX detectors...
AbstractA microfabricated gas chromatograph (μGC) is described and its application to the analysis o...
A microfabricated gas chromatograph (!GC) is described and its application to the determination of l...
Micromachining technology for the miniaturization of gas-chromatographic (GC) components together wi...
A microfabricated gas chromatograph (μGC) is described and its application to the analysis of sub-pa...
Microelectromechanical system (MEMS) technology enables the realization of miniaturized lab-on-a-chi...
International audienceThe discrimination of various chemical compounds is generally impossible by us...
An effective analytical strategy for targeted analysis of volatile organic compounds which combines ...
Air quality has become a major concern worldwide. Volatile organic compounds (VOCs) are hazardous ch...
This paper presents the development of MEMS gas preconcentrator (GP) for the detection of trace leve...
This dissertation describes the development of prototype instrumentation containing gas chromatograp...
Field measurements of volatile organic compounds (VOCs) are important in a range of disciplines incl...
New technologies offering sensitive, selective, and near-real-time identification and quantification...
Current methods for evaluating worker exposures to mixtures of airborne volatile organic compounds (...
The capability to analyze complex mixtures of airborne volatile organic compounds (VOCs) at low conc...
Micromachined gas-chromatographic (GC) components in combination with high sensitivity MOX detectors...
AbstractA microfabricated gas chromatograph (μGC) is described and its application to the analysis o...
A microfabricated gas chromatograph (!GC) is described and its application to the determination of l...
Micromachining technology for the miniaturization of gas-chromatographic (GC) components together wi...
A microfabricated gas chromatograph (μGC) is described and its application to the analysis of sub-pa...
Microelectromechanical system (MEMS) technology enables the realization of miniaturized lab-on-a-chi...
International audienceThe discrimination of various chemical compounds is generally impossible by us...
An effective analytical strategy for targeted analysis of volatile organic compounds which combines ...
Air quality has become a major concern worldwide. Volatile organic compounds (VOCs) are hazardous ch...
This paper presents the development of MEMS gas preconcentrator (GP) for the detection of trace leve...
This dissertation describes the development of prototype instrumentation containing gas chromatograp...
Field measurements of volatile organic compounds (VOCs) are important in a range of disciplines incl...
New technologies offering sensitive, selective, and near-real-time identification and quantification...