Physical Trace Gas Identification with the Photo Electron Ionization Spectrometer (PEIS)

被引:2
作者
Doll, Theodor [1 ]
Fuenzalida, Victor M. [2 ]
Schuette, Helmut [3 ]
Gassmann, Stefan [3 ]
Velasco-Velez, Juan J. [4 ]
Koehler, Robert [5 ]
Kontschev, Alex [6 ]
Haas, Thomas [6 ]
Ungethuem, Bert [7 ]
Walte, Andreas [7 ]
Oberroehrmann, Jonas [8 ]
Onken, Adrian [1 ]
Philipp, Kasimir M. [8 ]
Nguyen, Minh-Hai [1 ]
Lenarz, Thomas [1 ]
Hassel, Achim Walter [9 ]
Vioel, Wolfgang [5 ]
机构
[1] Hannover Med Sch, Biomat Engn ENT, D-30625 Hannover, Germany
[2] Univ Chile, Dept Fis, Lab Superf & Nanomat, FCFM, Ave Blanco Encalada 2008, Santiago 8370448, Chile
[3] Jade Univ Appl Sci, Dept Engn, D-26389 Wilhelmshaven, Germany
[4] ALBA Synchrotron Light Source, Barcelona 08290, Spain
[5] Univ Appl Sci & Arts, Fac Engn & Hlth, Von Ossietzky Str 99, D-37085 Gottingen, Germany
[6] Adlantis GmbH, D-44263 Dortmund, Germany
[7] Airsense Analyt GmbH, D-19061 Schwerin, Germany
[8] Eyyon DBT GmbH, Dept Med, D-97070 Wurzburg, Germany
[9] Johannes Kepler Univ Linz, Inst Chem Technol Inorgan Mat, A-4040 Linz, Austria
关键词
volatile organic compounds (VOCs) identification; nano-vacuum electronics; electron impact ionization; MEMS chemosensor; external photo effect; IMPACT IONIZATION; CROSS-SECTIONS;
D O I
10.3390/s24041256
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Chemosensor technology for trace gases in the air always aims to identify these compounds and then measure their concentrations. For identification, traceable methods are sparse and relate to large appliances such as mass spectrometers. We present a new method that uses the alternative traceable measurement of the ionization energies of trace gases in a way that can be miniaturized and energetically tuned. We investigate the achievable performance. Since tunable UV sources are not available for photoionization, we take a detour via impact ionization with electrons, which we generate using the photoelectric effect and bring to sharp, defined energies on a nanoscale in the air. Electron impact ionization is thus possible at air pressures of up to 900 hPa. The sensitivity of the process reaches 1 ppm and is equivalent to that of classic PID. With sharpened energy settings, substance identification is currently possible with an accuracy of 30 meV. We can largely explain the experimental observations with the known quantum mechanical models.
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页数:11
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