Evonik Degussa GmbH

Industrie / privates Unternehmen

Standort der Organisation:
Essen, Deutschland

Forschungsprojekte mit FAU-Wissenschaftlern

(Polyurethan-Nanoschaum aus Treibmittel-basierten Mikroemulsionen zur Hochleistungswärmedämmung):
PuNaMi: Charakterisierung von Mikroemulsionen mittels Dynamischer Lichtstreuung (DLS) und Ramanspektroskopie
Prof. Dr.-Ing. Andreas Paul Fröba
(01.07.2016 - 30.06.2019)

Publikationen in Kooperation mit FAU-Wissenschaftern

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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
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
Schraven, A., Schwab, P., Salomon, T., Schneider, R., Rolker, J., Willy, B.,... Wasserscheid, P. (2015). Absorption medium and method for absorption of CO2 from a gas mixture, wherein the medium comprises water, an amine and an organic salt. Evonik Degussa GmbH, Germany ..
Völkl, L., Recker, S., Niedermaier, M., Kiermaier, S., Strobel, P.-V., Maschmeyer, D.,... Haumann, M. (2015). Comparison between phosphine and NHC-modified Pd catalysts in the telomerization of butadiene with methanol - A kinetic study combined with model-based experimental analysis. Journal of Catalysis, 329, 547-559. https://dx.doi.org/10.1016/j.jcat.2015.06.004
Franke, R., Hahn, H., Quandt, T., Wasserscheid, P., Haumann, M., & Walter, S. (2015). Method for producing aldehydes from alkanes and synthesis gas. Evonik Degussa GmbH, Germany ..
Walter, S., Haumann, M., Wasserscheid, P., Hahn, H., & Franke, R. (2015). n-Butane Carbonylation to n-Pentanal Using a Cascade Reaction of Dehydrogenation and SILP-Catalyzed Hydroformylation. Aiche Journal, 61, 893-897. https://dx.doi.org/10.1002/aic.14676
Kaftan, A., Schönweiz, A., Nikiforidis, I., Hieringer, W., Dyballa, K.M., Franke, R.,... Haumann, M. (2015). Supported homogeneous catalyst makes its own liquid phase. Journal of Catalysis, 321, 32-38. https://dx.doi.org/10.1016/j.jcat.2014.10.019
Schraven, A., Schwab, P., Salomon, T., Schneider, R., Rolker, J., Willy, B.,... Wasserscheid, P. (2014). Absorption medium and process for the absorption of CO2 from a gas mixture. Evonik Degussa GmbH, Germany; Friedrich-Alexander-Universitaet Erlangen-Nuernberg ..
Dyballa, K.M., Franke, R., Hahn, H., Becker, M., Schönweiz, A., Debuschewitz, J.,... Libuda, J. (2014). Immobilized catalytically active composition for hydroformylation of olefin-containing mixtures. Evonik Industries AG, Germany ..
Rajagopalan, P., Kühnle, M., Polyakov, M., Müller, K., Arlt, W., Kruse, D.,... Bentrup, U. (2014). Methacrylic acid by carboxylation of propene with CO2 over POM catalysts - Reality or wishful thinking? Catalysis Communications, 48, 19-23. https://dx.doi.org/10.1016/j.catcom.2014.01.019
Schäffner, B., Blug, M., Kruse, D., Polyakov, M., Köckritz, A., Martin, A.,... Buchholz, S. (2014). Synthesis and Application of Carbonated Fatty Acid Esters from Carbon Dioxide Including a Life Cycle Analysis. Chemsuschem, 7(4), 1133-1139. https://dx.doi.org/10.1002/cssc.201301115
Schönweiz, A., Debuschewitz, J., Walter, S., Woelfel, R., Hahn, H., Dyballa, K.M.,... Wasserscheid, P. (2013). Ligand-Modified Rhodium Catalysts on Porous Silica in the Continuous Gas-Phase Hydroformylation of Short-Chain Alkenes-Catalytic Reaction in Liquid-Supported Aldol Products. ChemCatChem, 5, 2955-2963. https://dx.doi.org/10.1002/cctc.201300305
Franke, R., Brausch, N., Fridag, D., Christiansen, A., Becker, M., Wasserscheid, P.,... Schönweiz, A. (2012). Application of supported ionic liquid phase catalyst systems in the hydroformylation of olefin-containing mixtures to aldehyde mixtures with high portion of nonbranched aldehydes. Evonik Oxeno GmbH, Germany ..
Pyrlik, A., Hoelderich, W.F., Müller, K., Arlt, W., Strautmann, J., & Kruse, D. (2012). Dimethyl carbonate via transesterification of propylene carbonate with methanol over ion exchange resins. Applied Catalysis B-Environmental, 125, 486-491. https://dx.doi.org/10.1016/j.apcatb.2011.09.033
Haumann, M., Jakuttis, M., Franke, R., Schönweiz, A., & Wasserscheid, P. (2011). Continuous Gas-Phase Hydroformylation of a Highly Diluted Technical C4 Feed using Supported Ionic Liquid Phase Catalysts. ChemCatChem, 3(11), 1822--1827. https://dx.doi.org/10.1002/cctc.201100117
Wasserscheid, P., & Seiler, M. (2011). Leveraging gigawatt potentials by smart heat-pump technologies using ionic liquids. Chemsuschem, 4(4), 459-463. https://dx.doi.org/10.1002/cssc.201000191
Boeing, C., Maschmeyer, D., Winterberg, M., Buchholz, S., Melcher, B.U., Haumann, M., & Wasserscheid, P. (2011). Process and catalyst for oligomerization of C3-C5 olefins in batch reactor. Evonik Oxeno GmbH, Germany ..
Jakuttis, M., Schönweiz, A., Werner, S., Franke, R., Wiese, K.-D., Haumann, M., & Wasserscheid, P. (2011). Rhodium-Phosphite SILP Catalysis for the Highly Selective Hydroformylation of Mixed C4 Feedstocks. Angewandte Chemie-International Edition, 50(19), 4492--4495. https://dx.doi.org/10.1002/anie.201007164
Walther, S., Polster, S., Jank, M.P.M., Thiem, H., Ryssel, H., & Frey, L. (2011). Tuning of charge carrier density of ZnO nanoparticle films by oxygen plasma treatment. Advanced Powder Technology, 22(2), 253-256. https://dx.doi.org/10.1016/j.apt.2011.01.012
Voigt, M., Klaumünzer, M., Thiem, H., & Peukert, W. (2010). Detailed Analysis of the Growth Kinetics of ZnO Nanorods in Methanol. Journal of Physical Chemistry C, 114(14), 6243--6249. https://dx.doi.org/10.1021/jp911258d

Zuletzt aktualisiert 2013-02-07 um 12:11