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 in | Analytical chemistry (Washington) Vol. 82; no. 15; pp. 6480 - 6486 |
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Main Authors | , , , , , |
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Language | English |
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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. |
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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 |
Author_xml | – sequence: 1 givenname: Ward surname: D’Autry fullname: D’Autry, Ward – sequence: 2 givenname: Kris surname: Wolfs fullname: Wolfs, Kris – sequence: 3 givenname: Sitaramaraju surname: Yarramraju fullname: Yarramraju, Sitaramaraju – sequence: 4 givenname: Ann Van surname: Schepdael fullname: Schepdael, Ann Van – sequence: 5 givenname: Jos surname: Hoogmartens fullname: Hoogmartens, Jos – sequence: 6 givenname: Erwin surname: Adams fullname: Adams, Erwin email: Erwin.Adams@pharm.kuleuven.be |
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Cites_doi | 10.6028/jres.057.039 10.1103/PhysRevB.59.13401 10.1116/1.1317712 10.1063/1.1889447 10.1016/j.apsusc.2009.09.025 10.1016/j.apsusc.2006.07.093 10.1016/j.ijms.2006.07.002 10.1016/0020-7381(73)80027-0 10.1016/0168-1176(90)85077-F 10.1063/1.1382641 10.1007/s003390051043 10.1039/c39720000245 10.1016/j.corsci.2003.09.022 10.1116/1.578949 10.1063/1.1740961 10.1246/bcsj.43.1649 10.1007/s11745-006-1399-8 10.1063/1.1696958 10.1126/science.275.5305.1447 10.1016/S1359-6462(00)00362-6 10.1063/1.1144523 10.1039/b418056a 10.1063/1.1751688 10.1039/B712710C 10.1007/s10789-005-0245-3 |
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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 |
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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 |
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