Interference compounds like gasoline, diesel, burning wood or fuel, etc. are presented in common battlefield situations. These compounds can cause detectors to respond as a false positive or interfere with the detector's ability to respond to target compounds such as chemical warfare agents. To ensure proper response of the ion mobility spectrometer to chemical warfare agents, two special software packages were developed and incorporated into the Bruker RAID-1. The programs suppress interferring signals caused by car exhaust or smoke gases resulting from burning materials and correct the influence of variable sample gas humidity which is important for detection and quantification of blister agents like mustard gas or lewisite
A simple and highly selective chromogenic and fluorogenic detection of sulfur mustard (SM) simulants...
Detection of Chemical/Biological Agents and Simulants A new detector for chemical and biological age...
An ion mobility spectrometer (IMS) is capable of detecting gaseous volatile organic compounds (VOCs)...
Due to recent progress, higher-order chemical instrumentation provides large amounts of data which n...
[eng]Due to recent progress, higher-order chemical instrumentation provides large amounts of data wh...
All authors are with Pranalytica, Inc.We report high-sensitivity detection of chemical warfare agent...
Currently, there is an urgent need for field-rugged and field-programmable sensor systems that provi...
Chemical weapons continue to be an ongoing threat that necessitates the improvement of existing dete...
Ion Mobility Spectrometry (IMS) is currently being successfully applied to the problem of on-line tr...
This research explores the use of comprehensive gas chromatography (GCxGC) with different detectors ...
A gas-cylinder-free plasma desorption/ionization system was developed to realize a mobile on-site an...
The aim of the work presented in this review is to present a detailed summary of the current sensing...
This paper introduces a simple method for selective and sensitive detection of black powder by addin...
Thesis (Ph.D.), Department of Chemistry, Washington State UniversityIon mobility spectrometry has be...
Astronauts must be alerted quickly to chemical leaks that compromise their health and the success of...
A simple and highly selective chromogenic and fluorogenic detection of sulfur mustard (SM) simulants...
Detection of Chemical/Biological Agents and Simulants A new detector for chemical and biological age...
An ion mobility spectrometer (IMS) is capable of detecting gaseous volatile organic compounds (VOCs)...
Due to recent progress, higher-order chemical instrumentation provides large amounts of data which n...
[eng]Due to recent progress, higher-order chemical instrumentation provides large amounts of data wh...
All authors are with Pranalytica, Inc.We report high-sensitivity detection of chemical warfare agent...
Currently, there is an urgent need for field-rugged and field-programmable sensor systems that provi...
Chemical weapons continue to be an ongoing threat that necessitates the improvement of existing dete...
Ion Mobility Spectrometry (IMS) is currently being successfully applied to the problem of on-line tr...
This research explores the use of comprehensive gas chromatography (GCxGC) with different detectors ...
A gas-cylinder-free plasma desorption/ionization system was developed to realize a mobile on-site an...
The aim of the work presented in this review is to present a detailed summary of the current sensing...
This paper introduces a simple method for selective and sensitive detection of black powder by addin...
Thesis (Ph.D.), Department of Chemistry, Washington State UniversityIon mobility spectrometry has be...
Astronauts must be alerted quickly to chemical leaks that compromise their health and the success of...
A simple and highly selective chromogenic and fluorogenic detection of sulfur mustard (SM) simulants...
Detection of Chemical/Biological Agents and Simulants A new detector for chemical and biological age...
An ion mobility spectrometer (IMS) is capable of detecting gaseous volatile organic compounds (VOCs)...