Characterization and Improvement of Signal Drift Associated with Electron Ionization Quadrupole Mass Spectrometry

Quadrupole mass spectrometry with electron ionization (EI-QMS) is a very popular detection technique in combination with gas chromatography. It is deployed for the analysis of volatile and semivolatile analytes in many industry domains. Although a very important factor for quantitative analysis, lit...

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Published inAnalytical chemistry (Washington) Vol. 82; no. 15; pp. 6480 - 6486
Main Authors D’Autry, Ward, Wolfs, Kris, Yarramraju, Sitaramaraju, Schepdael, Ann Van, Hoogmartens, Jos, Adams, Erwin
Format Journal Article
LanguageEnglish
Published Washington, DC American Chemical Society 01.08.2010
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Abstract Quadrupole mass spectrometry with electron ionization (EI-QMS) is a very popular detection technique in combination with gas chromatography. It is deployed for the analysis of volatile and semivolatile analytes in many industry domains. Although a very important factor for quantitative analysis, little is known about the stability of ion source performance. Only a few papers and patents report possible signal instabilities due to sample adsorption, degradation, or insulating deposits on the hot stainless steel surface of the ion source. In this study, a conventional stainless steel ion source was used to investigate possible signal drifts. It was observed that the EI-QMS instrument indeed suffered from continuous signal instability. It was found that the key parts which are responsible for the signal instabilities are those that regulate the ion beam toward the mass analyzer: the repeller, exit plate, and focusing lenses. The voltage of the repeller was found to have a major influence on the signal stability. The surface of the repeller, exit plate, and focusing lenses was modified by applying a gold coating. It was demonstrated that the signal stability of the MS dramatically improved when using the gold-coated parts. The contribution of each part to the stability improvement was quantitatively determined and compared with the standard stainless steel source performance. It was assumed that the signal drift observed with the stainless steel EI source originated from charge buildup on the surfaces. This hypothesis was supported by software simulations.
AbstractList Quadrupole mass spectrometry with electron ionization (EI-QMS) is a very popular detection technique in combination with gas chromatography. It is deployed for the analysis of volatile and semivolatile analytes in many industry domains. Although a very important factor for quantitative analysis, little is known about the stability of ion source performance. Only a few papers and patents report possible signal instabilities due to sample adsorption, degradation, or insulating deposits on the hot stainless steel surface of the ion source. In this study, a conventional stainless steel ion source was used to investigate possible signal drifts. It was observed that the EI-QMS instrument indeed suffered from continuous signal instability. It was found that the key parts which are responsible for the signal instabilities are those that regulate the ion beam toward the mass analyzer: the repeller, exit plate, and focusing lenses. The voltage of the repeller was found to have a major influence on the signal stability. The surface of the repeller, exit plate, and focusing lenses was modified by applying a gold coating. It was demonstrated that the signal stability of the MS dramatically improved when using the gold-coated parts. The contribution of each part to the stability improvement was quantitatively determined and compared with the standard stainless steel source performance. It was assumed that the signal drift observed with the stainless steel EI source originated from charge buildup on the surfaces. This hypothesis was supported by software simulations. [PUBLICATION ABSTRACT]
Quadrupole mass spectrometry with electron ionization (EI-QMS) is a very popular detection technique in combination with gas chromatography. It is deployed for the analysis of volatile and semivolatile analytes in many industry domains. Although a very important factor for quantitative analysis, little is known about the stability of ion source performance. Only a few papers and patents report possible signal instabilities due to sample adsorption, degradation, or insulating deposits on the hot stainless steel surface of the ion source. In this study, a conventional stainless steel ion source was used to investigate possible signal drifts. It was observed that the EI-QMS instrument indeed suffered from continuous signal instability. It was found that the key parts which are responsible for the signal instabilities are those that regulate the ion beam toward the mass analyzer: the repeller, exit plate, and focusing lenses. The voltage of the repeller was found to have a major influence on the signal stability. The surface of the repeller, exit plate, and focusing lenses was modified by applying a gold coating. It was demonstrated that the signal stability of the MS dramatically improved when using the gold-coated parts. The contribution of each part to the stability improvement was quantitatively determined and compared with the standard stainless steel source performance. It was assumed that the signal drift observed with the stainless steel EI source originated from charge buildup on the surfaces. This hypothesis was supported by software simulations.
Author Adams, Erwin
D’Autry, Ward
Yarramraju, Sitaramaraju
Schepdael, Ann Van
Wolfs, Kris
Hoogmartens, Jos
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  givenname: Ward
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  givenname: Ann Van
  surname: Schepdael
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  email: Erwin.Adams@pharm.kuleuven.be
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Issue 15
Keywords Performance evaluation
Electron impact ionization
Support
Ion beam
Instrumentation
Standard
Analyzer
Coatings
Quadrupole spectrometer
Chemical enrichment
Characterization
Degradation
Improvement
Signal
Quantitative analysis
Gold
Factor analysis
Stability
Ion source
Sample
Use
Plate
Gas chromatography
Adsorption
Stainless steel
Instability
Software
Technique
Detection
Mass spectrometry
Electron spectrometry
Language English
License CC BY 4.0
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  doi: 10.1039/B712710C
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Snippet Quadrupole mass spectrometry with electron ionization (EI-QMS) is a very popular detection technique in combination with gas chromatography. It is deployed for...
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SubjectTerms Analytical chemistry
Chemistry
Chromatographic methods and physical methods associated with chromatography
Exact sciences and technology
Gas chromatographic methods
Gases
General, instrumentation
Ion chromatography
Mass spectrometry
Oxygen - chemistry
Simulation
Software
Spectrometric and optical methods
Spectrometry, Mass, Electrospray Ionization - instrumentation
Spectrometry, Mass, Electrospray Ionization - methods
Stainless Steel
Volatilization
Title Characterization and Improvement of Signal Drift Associated with Electron Ionization Quadrupole Mass Spectrometry
URI http://dx.doi.org/10.1021/ac100780s
https://www.ncbi.nlm.nih.gov/pubmed/20669996
https://www.proquest.com/docview/744259063
https://search.proquest.com/docview/748929538
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