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Fakultät für Chemie
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S05 T01 B30
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Wissenschaftliche/r Mitarbeiter/in, Prof. Schmitz
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Wissenschaftliche/r Mitarbeiter/in, Prof. Voskuhl
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Die folgenden Publikationen sind in der Online-Universitätsbibliographie der Universität Duisburg-Essen verzeichnet. Weitere Informationen finden Sie gegebenenfalls auch auf den persönlichen Webseiten der Person.
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Improving the reliability of phthalate esters analysis in water samples by gas chromatography-tube plasma ionization-high-resolution mass spectrometry (GC-TPI-HRMS)In: Talanta: The International Journal of Pure and Applied Analytical Chemistry Jg. 285 (2025) 127388Online Volltext: dx.doi.org/ (Open Access)
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Cross-linked Triblock Peptide Capsules as Potential Oxygen CarriersIn: ChemistryOpen Jg. 13 (2024) Nr. 4, e202300282Online Volltext: dx.doi.org/ Online Volltext (Open Access)
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Development of an Ultrasonic Nebulization System for an Inverse Low Temperature Plasma Ionization SourceIn: Journal of the American Society for Mass Spectrometry (JASMS) Jg. 35 (2024) Nr. 12, S. 2918 - 2925Online Volltext: dx.doi.org/
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Steric Engineering of Rotaxane Catalysts : Benefits and Limits of Using the Mechanical Bond in Catalyst DesignIn: Chemistry - A European Journal Jg. 30 (2024) Nr. 67, e202402717Online Volltext: dx.doi.org/ (Open Access)
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Review on atmospheric pressure ionization sources for gas chromatography-mass spectrometry : Part I: Current ion source developments and improvements in ionization strategiesIn: Analytica Chimica Acta Jg. 1238 (2023) 340353Online Volltext: dx.doi.org/ (Open Access)
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Review on atmospheric pressure ionization sources for gas chromatography-mass spectrometry : Part II: Current applicationsIn: Analytica Chimica Acta Jg. 1238 (2023) 340379Online Volltext: dx.doi.org/ (Open Access)
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Development of a Tube Plasma Ion Source for Gas Chromatography–Mass Spectrometry Analysis and Comparison with Other Atmospheric Pressure Ionization TechniquesIn: Analytical Chemistry Jg. 94 (2022) Nr. 27, S. 9595 - 9602Online Volltext: dx.doi.org/
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Development of an inverse low-temperature plasma ionization source for liquid chromatography/mass spectrometryIn: Rapid Communications in Mass Spectrometry Jg. 35 (2021) Nr. 10, S. e9071Online Volltext: dx.doi.org/ (Open Access)
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Analysis of volatile metabolites from in vitro biofilms of Pseudomonas aeruginosa with thin-film microextraction by thermal desorption gas chromatography-mass spectrometryIn: Analytical and Bioanalytical Chemistry Jg. 412 (2020) S. 2881 - 2892Online Volltext: dx.doi.org/ (Open Access)
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Development of a fast-switching dual (ESI/APCI) ionization source for liquid chromatography/mass spectrometryIn: Rapid Communications in Mass Spectrometry Jg. 34 (2020) Nr. 17,Online Volltext: dx.doi.org/ (Open Access)
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Development of an atmospheric pressure chemical ionization interface for GC-MSIn: Molecules: A Journal of Synthetic Chemistry and Natural Product Chemistry Jg. 25 (2020) Nr. 14, S. 3253Online Volltext: dx.doi.org/ Online Volltext (Open Access)
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Thermogravimetry coupled to an atmospheric pressure photo ionization quadrupole mass spectrometry for the product control of pharmaceutical formulations and the analysis of plasticizers in polymersIn: Talanta: The International Journal of Pure and Applied Analytical Chemistry Jg. 198 (2019) S. 440 - 446Online Volltext: dx.doi.org/
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Direct inlet probe ion mobility spectrometryIn: Talanta: The International Journal of Pure and Applied Analytical Chemistry Jg. 180 (2018) S. 61 - 68Online Volltext: dx.doi.org/ Online Volltext (Open Access)
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Time-of-flight ion mobility spectrometry in combination with laser-induced fluorescence detection systemIn: Analytical and Bioanalytical Chemistry Jg. 409 (2017) Nr. 27, S. 6279 - 6286Online Volltext: dx.doi.org/
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X-ray ionization differential ion mobility spectrometryIn: Talanta: The International Journal of Pure and Applied Analytical Chemistry Jg. 162 (2017) S. 159 - 166Online Volltext: dx.doi.org/ Online Volltext (Open Access)
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Analysis of gasoline contaminated water samples by means of dopant-assisted atmospheric pressure photoionization differential ion mobility spectrometryIn: International Journal for Ion Mobility Spectrometry Jg. 19 (2016) Nr. 2, S. 121 - 130Online Volltext: dx.doi.org/
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Effect of the humidity on analysis of aromatic compounds with planar differential ion mobility spectrometryIn: International Journal for Ion Mobility Spectrometry Jg. 18 (2015) Nr. 1/2, S. 67 - 75Online Volltext: dx.doi.org/
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Low-temperature plasma ionization differential ion mobility spectrometryIn: Analytical Chemistry Jg. 87 (2015) Nr. 17, S. 8932 - 8940Online Volltext: dx.doi.org/
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Non-polar modifier assisted analysis of aromatic compounds by means of planar differential ion mobility spectrometry with 63Ni ionization sourceIn: Analytical Methods Jg. 7 (2015) Nr. 5, S. 2100 - 2107Online Volltext: dx.doi.org/ (Open Access)
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Development of an electrospray-63Ni-differential ion mobility spectrometer for the analysis of aqueous samplesIn: Talanta: The International Journal of Pure and Applied Analytical Chemistry Jg. 120 (2014) S. 173 - 180Online Volltext: dx.doi.org/ Online Volltext (Open Access)
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Drift tube ion mobility spectrometry laser induced fluorescence detectionDuisburg, Essen (2017) x, 160 SeitenOnline Volltext (Open Access)