Santos, J. M.; Vetere, A.; Wisniewski, A.; Eberlin, M. N.; Schrader, W. Modified SARA Method to Unravel the Complexity of Resin Fraction(s) in Crude Oil. Energy & Fuels2020, 34, 16006–16013.
Kondyli, A.; Schrader, W. Evaluation of the combination of different atmospheric pressure ionization sources for the analysis of extremely complex mixtures. Rapid Communications in Mass Spectrometry2020, 34, e8676.
Farmani, Z.; Schrader, W. A Detailed Look at the Saturate Fractions of Different Crude Oils Using Direct Analysis by Ultrahigh Resolution Mass Spectrometry (UHRMS). Energies2019, 12, 3455.
Vetere, A.; Alachraf, M. W.; Panda, S. K.; Andersson, J. T.; Schrader, W. Studying the fragmentation mechanism of selected components present in crude oil by collision‐induced dissociation mass spectrometry. Rapid Communications in Mass Spectrometry2018, 32, 2141–2151.
Himmelberg, A. M.; Brüls, T.; Farmani, Z.; Weyrauch, P.; Barthel, G.; Schrader, W.; Meckenstock, R. U. Anaerobic degradation of phenanthrene by a sulfate‐reducing enrichment culture. Environmental Microbiology2018, 20, 3589–3600.
Santos, J. M.; Vetere, A.; Wisniewski Jr., A.; Eberlin, M. N.; Schrader, W. Comparing Crude Oils with Different API Gravities on a Molecular Level Using Mass Spectrometric Analysis. Part 2: Resins and Asphaltenes. Energies2018, 11, 2767.
Santos, J. M.; Wisniewski Jr., A.; Eberlin, M. N.; Schrader, W. Comparing Crude Oils with Different API Gravities on a Molecular Level Using Mass Spectrometric Analysis. Part 1: Whole Crude Oil. Energies2018, 11, 2766.
Mensah, J. B.; Delidovich, I.; Hausoul, P. J. C.; Weisgerber, L.; Schrader, W.; Palkovits, R. Mechanistic Studies of the Cu(OH)+‐Catalyzed Isomerization of Glucose into Fructose in Water. ChemSusChem2018, 11, 2579–2586.
Molnarne Guricza, L.; Schrader, W. Optimized asphaltene separation by online coupling of size exclusion chromatography and ultrahigh resolution mass spectrometry. Fuel2018, 215, 631–637.
Vetere, A.; Pröfrock, D.; Schrader, W. Quantitative and Qualitative Analysis of Three Classes of Sulfur Compounds in Crude Oil. Angewandte Chemie International Edition2017, 56, 10933–10937.
Qi, Y.; Luo, R.; Schrader, W.; Volmer, D. A. Application of phase correction to improve the characterization of photooxidation products of lignin using 7 Tesla Fourier-transform ion cyclotron resonance mass spectrometry. FACETS2017, 2, 461–475.
Ghislain, T.; Molnarne Guricza, L.; Schrader, W. Characterization of crude oil asphaltenes by coupling size-exclusion chromatography directly to an ultrahigh-resolution mass spectrometer. Rapid Communications in Mass Spectrometry2017, 31, 495–502.
Molnarne Guricza, L.; Schrader, W. Argentation chromatography coupled to ultrahigh‐resolution mass spectrometry for the separation of a heavy crude oil. Journal of Chromatography A2017, 1484, 41–48.
Wang, X.; Schrader, W. Selective Analysis of Sulfur-Containing Species in a Heavy Crude Oil by Deuterium Labeling Reactions and Ultrahigh Resolution Mass Spectrometry. International Journal of Molecular Sciences2015, 16, 30133–30143.
Alachraf, M. W.; Wende, R. C.; Schuler, S. M. M.; Schreiner, P. R.; Schrader, W. Functionality, Effectiveness, and Mechanistic Evaluation of a Multicatalyst-Promoted Reaction Sequence by Electrospray Ionization Mass Spectrometry. Chemistry – A European Journal2015, 21, 16203–16208.
TU Dortmund und Pantazis-Gruppe weisen in Kollaborationsprojekt eine neue Klasse von organischer Verbindung mit neutralem, einfach gebundenen Kohlenstoffatom nach
Dr. Dimitrios Pantazis, Gruppenleiter am MPI für Kohlenforschung in der Abteilung für molekulare Theorie und Spektroskopie, ist zum Vizepräsidenten der QBIC Society gewählt worden.
Mit Hilfe von Multiskalen-Simulationsmethoden und modernsten quantenchemischen Berechnungen untersuchten Dr. Dimitrios Pantazis und seine Gruppe, wie die Energie des Sonnenlichts in den Elektronenfluss umgewandelt wird, der chemische Reaktionen antreibt.