2023
DOI: 10.3390/s23063272
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Semiconductor Gas Sensors for Detecting Chemical Warfare Agents and Their Simulants

Abstract: On-site detection of chemical warfare agents (CWAs) can be performed by various analytical techniques. Devices using well-established techniques such as ion mobility spectrometry, flame photometry, infrared and Raman spectroscopy or mass spectrometry (usually combined with gas chromatography) are quite complex and expensive to purchase and operate. For this reason, other solutions based on analytical techniques well suited to portable devices are still being sought. Analyzers based on simple semiconductor sens… Show more

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Cited by 15 publications
(4 citation statements)
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“…Zhanna Mukanova, Intelligent Hardware-Software Processing of High-Frequency Scanning Data 4) Gas analyzers with semiconductor sensors [49]; 5) Gas analyzers with electrochemical sensors [50]; 6) Gas analyzers with flame-ionization sensors [51]; 7) Flame temperature analyzers [52]; 8) Gas analyzers with paramagnetic oxygen sensors [53], [54].…”
Section: A Development Of the Gas Analyzer Circuitmentioning
confidence: 99%
“…Zhanna Mukanova, Intelligent Hardware-Software Processing of High-Frequency Scanning Data 4) Gas analyzers with semiconductor sensors [49]; 5) Gas analyzers with electrochemical sensors [50]; 6) Gas analyzers with flame-ionization sensors [51]; 7) Flame temperature analyzers [52]; 8) Gas analyzers with paramagnetic oxygen sensors [53], [54].…”
Section: A Development Of the Gas Analyzer Circuitmentioning
confidence: 99%
“…23 The rare earth element method exhibits a low fluorescence quantum yield, while semiconductor technology has poor selectivity for DCP. 24 As an alternative, fluorescence detection is of high concern due to its low cost, portability and ease of operation. 25 Until now, several fluorescent probes (Fig.…”
Section: Introductionmentioning
confidence: 99%
“…In recent years, dispersed structures based on close-packed semiconductor nanoparticles have been the object of particular attention as material platforms for applications in sensorics [1][2][3][4], photonics [5][6][7][8], catalytic chemistry [9][10][11], etc. In addition to various applications, studies of the features of charge and photon transfer in these systems at microscopic, mesoscopic, and macroscopic levels can contribute to further development of such fundamental areas of modern science as the percolation theory, physics of complex nonstationary systems, solid state physics, optics of random media, etc.…”
Section: Introductionmentioning
confidence: 99%