This paper describes results from efforts to develop VOC sensing systems based on two complementary techniques. The first technique used a gated channeltron detector for resonant laser-induced multiphoton photoionization detection of trace organic vapors in a supersonic molecular beam. The channeltron was gated using a relatively simple circuit to generate a negative gate pulse with a width of 400 ns (FWHM), a 50 ns turn-on (rise) time, a 1.5 {mu}s turn-off (decay) time, a pulse amplitude of {minus}1000 Volts, and a DC offset adjustable from zero to {minus}1500 Volts. The gated channeltron allows rejection of spurious responses to UV laser light scattered directly into the channeltron and time-delayed ionization signals induced by photoioni...
The time-resolved ion-induced voltages obtained from multiphoton ionization (MPI) in gases were appl...
This is the final report of a one-year, Laboratory Directed Research and Development (LDRD) project ...
This dissertation presents the design of a unique prototype chemical agent detector which utilizes a...
A chemical sensing system based on arrays of surface acoustic wave (SAW) delay lines has been develo...
Several aspects of surface acoustic-wave (SAW) microsensor technology are explored. Arrays of polyme...
A prototype personal monitoring instrument capable of selective, multi-vapor monitoring of organic v...
The environment around us has a great impact on human health. A polluted environment can adversely i...
A prototype portable instrument capable of selectively measuring organic vapors in breath and air at...
Monitoring of volatile organic compounds (VOCs) is of increasing importance in many application fiel...
Volatile organic compounds (VOCs) are a precursor to the formation of ground-level ozone and airborn...
This chapter introduces the topic of detection of volatile organic compounds (VOCs) via nanomaterial...
An approach for detecting hazardous volatile organic compounds (VOCs) in ppb and sub-ppb concentrati...
Surface acoustic wave sensors (SAWs) are excellent at detecting volatile organic compounds (VOCs) si...
The detection and identification of volatile organic compounds (VOCs) is one of the most serious sub...
Surface acoustic wave sensors (SAWs) are excellent at detecting volatile organic compounds (VOCs) si...
The time-resolved ion-induced voltages obtained from multiphoton ionization (MPI) in gases were appl...
This is the final report of a one-year, Laboratory Directed Research and Development (LDRD) project ...
This dissertation presents the design of a unique prototype chemical agent detector which utilizes a...
A chemical sensing system based on arrays of surface acoustic wave (SAW) delay lines has been develo...
Several aspects of surface acoustic-wave (SAW) microsensor technology are explored. Arrays of polyme...
A prototype personal monitoring instrument capable of selective, multi-vapor monitoring of organic v...
The environment around us has a great impact on human health. A polluted environment can adversely i...
A prototype portable instrument capable of selectively measuring organic vapors in breath and air at...
Monitoring of volatile organic compounds (VOCs) is of increasing importance in many application fiel...
Volatile organic compounds (VOCs) are a precursor to the formation of ground-level ozone and airborn...
This chapter introduces the topic of detection of volatile organic compounds (VOCs) via nanomaterial...
An approach for detecting hazardous volatile organic compounds (VOCs) in ppb and sub-ppb concentrati...
Surface acoustic wave sensors (SAWs) are excellent at detecting volatile organic compounds (VOCs) si...
The detection and identification of volatile organic compounds (VOCs) is one of the most serious sub...
Surface acoustic wave sensors (SAWs) are excellent at detecting volatile organic compounds (VOCs) si...
The time-resolved ion-induced voltages obtained from multiphoton ionization (MPI) in gases were appl...
This is the final report of a one-year, Laboratory Directed Research and Development (LDRD) project ...
This dissertation presents the design of a unique prototype chemical agent detector which utilizes a...