PD Dr. Marco Haumann


Lehrstuhl für Chemische Reaktionstechnik

Publications (Download BibTeX)

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Marinkovic, J.M., Riisager, A., Franke, R., Wasserscheid, P., & Haumann, M. (2019). Fifteen Years of Supported Ionic Liquid Phase-Catalyzed Hydroformylation: Material and Process Developments. Industrial & Engineering Chemistry Research, 58(7), 2409-2420. https://dx.doi.org/10.1021/acs.iecr.8b04010
Stepic, R., Wick, C., Strobel, V., Berger, D., Vucemilovic-Alagic, N., Haumann, M.,... Smith, D.M. (2019). Mechanism of the Water–Gas Shift Reaction Catalyzed by Efficient Ruthenium-Based Catalysts: A Computational and Experimental Study. Angewandte Chemie International Edition, 58(3), 741-745. https://dx.doi.org/10.1002/anie.201811627
Wolf, P., Logemann, M., Schörner, M., Keller, L., Haumann, M., & Wessling, M. (2019). Multi-walled carbon nanotube-based composite materials as catalyst support for water-gas shift and hydroformylation reactions. RSC Advances, 9(47), 27732-27742. https://dx.doi.org/10.1039/c9ra04830h
Müller, T., Dixon, J.T., Haumann, M., & Wasserscheid, P. (2019). Trimerization and tetramerization of ethylene in continuous gas-phase reaction using a Cr-based supported liquid phase catalyst. Reaction Chemistry & Engineering, 4(1), 131-140. https://dx.doi.org/10.1039/c8re00179k
Bauer, T., Stepic, R., Wolf, P., Kollhoff, F., Karawacka, W., Wick, C.,... Libuda, J. (2018). Dynamic equilibria in supported ionic liquid phase (SILP) catalysis: in situ IR spectroscopy identifies [Ru(CO)xCly]n species in water gas shift catalysis. Catalysis: Science and Technology, 8(1), 344-357. https://dx.doi.org/10.1039/C7CY02199B
Kaftan, A., Klefer, H., Haumann, M., Laurin, M., Wasserscheid, P., & Libuda, J. (2017). An operando DRIFTS-MS study of NH3 removal by supported ionic liquid phase (SILP) materials. Separation and Purification Technology, 174, 245-250. https://dx.doi.org/10.1016/j.seppur.2016.10.017
Lijewski, M., Hogg, J.M., Swadzba-Kwasny, M., Wasserscheid, P., & Haumann, M. (2017). Coating of Pd/C catalysts with Lewis-acidic ionic liquids and liquid coordination complexes -- SCILL induced activity enhancement in arene hydrogenation. RSC Advances, 7(44), 27558-27563. https://dx.doi.org/10.1039/C7RA03295A
Walter, S., Spohr, H., Franke, R., Hieringer, W., Wasserscheid, P., & Haumann, M. (2017). Detailed Investigation of the Mechanism of Rh-Diphosphite Supported Ionic Liquid Phase (SILP)-Catalyzed 1-Butene Hydroformylation in the Gas Phase via Combined Kinetic and Density Functional Theory (DFT) Modeling Studies. ACS Catalysis, 7(2), 1035-1044. https://dx.doi.org/10.1021/acscatal.6b02315
Bauer, T., Hager, V., Williams, M., Laurin, M., Döpper, T., Görling, A.,... Libuda, J. (2017). Palladium-Mediated Ethylation of the Imidazolium Cation Monitored In Operando on a Solid Catalyst with Ionic Liquid Layer. ChemCatChem, 9(1), 109-113. https://dx.doi.org/10.1002/cctc.201601222
Strobel, V., Schuster, J., Bräuer, A., Vogt, L., Junge, H., & Haumann, M. (2017). Shining light on low-temperature methanol aqueous-phase reforming using homogeneous Ru-pincer complexes – operando Raman-GC studies. Reaction Chemistry & Engineering. https://dx.doi.org/10.1039/C6RE00228E

Last updated on 2019-22-01 at 17:51