Prof. Dr.-Ing. Matthias Wessling
The aim of Matthias Wessling’s research is to integrate selective mass transfer and conversion into micro-, meso- and macroscopic systems. In particular, he focusses on systems with functionalities controlled by tailored interfaces. Macroscopic systems are being analyzed, modeled and developed at his chair for Chemical Engineering at RWTH Aachen University (Aachener Verfahrenstechnik). At DWI, Matthias Wessling focuses on micro- and mesoscopic systems which integrate basic principles of boundary layers: (a) selective mass transport, (b) molecular-specific conversion and (c) charge transfer. The overall aim is to synthesize interactive materials systems inspired by nature. Using existing and novel materials, complex interactive structures are engineered and their structure-function relationship is analyzed in stable or transient pressure, concentration and electrical charge gradients. Applications are energy storage, water treatment and medical engineering.
Curriculum Vitae
Matthias Wessling heads the Chair of Chemical Process Engineering at RWTH Aachen University. He is Vice-Rector for Research and Structure at the RWTH Aachen University and a member of the DWI Scientific Board. He was Vice Scientific Director of the DWI from 2015 to 2018. He is Editor of the Journal of Membrane Science. After studying chemical engineering in Dortmund and Cincinatti, he did his PhD in Twente/NL. He was Senior Research Scientist at Membrane Technology and Research Inc., Menlo Park, CA and head of the Department of Separation Processes at Akzo Nobel. From 2000 to 2010, he was Chair of Membrane Science and Technology at the University of Twente.
Selected professional functions, honors and awards
- 2022 Member of the German National Academy of Sciences Leopoldina
- 2019 Gottfried Wilhelm Leibniz Prize
- 2016 ERC Advanced Grant ConFluReM (Controlling Fluid Resistance at Membranes)
- 2010 Alexander von Humboldt Professorship
- Since 2003 Honorary Scientific Member, Russian Academy of Science Institute TIPS (Topchiev Institute of Petrolchemical Sciences), Moscow
- 1994 Best Ph.D. Thesis Award, European Membrane Society
Projects
Publications
Titel/Autoren | DOI-LINK | Magazine | Jahre | |
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Basement Membrane Mimics of Biofunctionalized Nanofibers for a Bipolar-Cultured Human Primary Alveolar-Capillary Barrier Model
A. Nishiguchi, S. Singh, M. Wessling, C. J. Kirkpatrick and M. Moller
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https://www.doi.org/10.1021/acs.biomac.6b01509 | Biomacromolecules | 2017 | |
Towards a Biohybrid Lung: Endothelial Cells Promote Oxygen Transfer through Gas Permeable Membranes
S. Menzel, N. Finocchiaro, C. Donay, A. L. Thiebes, F. Hesselmann, J. Arens, S. Djeljadini, M. Wessling, T. Schmitz-Rode, S. Jockenhoevel and C. G. Cornelissen
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https://www.doi.org/10.1155/2017/5258196 | Biomed Research International | 2017 | |
Cell barrier characterization in transwell inserts by electrical impedance spectroscopy
G. Linz, S. Djeljadini, L. Steinbeck, G. Kose, F. Kiessling and M. Wessling
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https://doi.org/10.1016/j.bios.2020.112345 | Biosensors & Bioelectronics | 2020 | |
A Novel Membrane Stirrer System Enables Foam-Free Biosurfactant Production
P. Bongartz, T. Karmainski, M. Meyer, J. Linkhorst, T. Tiso, L. M. Blank and M. Wessling
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https://doi.org/10.1002/bit.28334 | Biotechnology and Bioengineering | 2023 | |
A scalable bubble-free membrane aerator for biosurfactant production
P. Bongartz, I. Bator, K. Baitalow, R. Keller, T. Tiso, L. M. Blank and M. Wessling
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https://doi.org/10.1002/bit.27822 | Biotechnology and Bioengineering | 2021 | |
High capacity polyethylenimine impregnated microtubes made of carbon nanotubes for CO2 capture
L. Keller, B. Ohs, J. Lenhart, L. Abduly, P. Blanke and M. Wessling
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https://www.doi.org/10.1016/j.carbon.2017.10.023 | Carbon | 2018 | |
Unraveling charge transport in carbon flow-electrodes: Performance prediction for desalination applications
A. Rommerskirchen, A. Kalde, C. J. Linnartz, L. Bongers, G. Linz and M. Wessling
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https://doi.org/10.1016/j.carbon.2019.01.053 | Carbon | 2019 | |
Ultra-low temperature water–gas shift reaction catalyzed by homogeneous Ru-complexes in a membrane reactor – membrane development and proof of concept
M. Logemann, P. Wolf, J. Loipersböck, A. Schrade, M. Wessling and M. Haumann
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https://doi.org/10.1039/D0CY02111C | Catalysis Science & Technology | 2020 | |
An electro-Fenton process coupled with nanofiltration for enhanced conversion of cellobiose to glucose
R. G. Keller, J. Weyand, J. B. Vennekoetter, J. Kamp and M. Wessling
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https://doi.org/10.1016/j.cattod.2020.05.059 | Catalysis Today | 2021 | |
Monolithic Sic Supports with Tailored Hierarchical Porosity for Molecularly Selective Membranes and Supported Liquid-Phase Catalysis
R. Portela, J. M. Marinkovic, M. Logemann, M. Schörner, N. Zahrtman, E. Eray, M. Haumann, E. J. García-Suárez, M. Wessling, P. Ávila, A. Riisager and R. Fehrmann
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https://doi.org/10.1016/j.cattod.2020.06.045 | Catalysis Today | 2020 | |
3D-Printed Electrodes with Improved Mass Transport Properties
J. Lolsberg, O. Starck, S. Stiefel, J. Hereijgers, T. Breugelmans and M. Wessling
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https://www.doi.org/10.1002/celc.201700662 | Chemelectrochem | 2017 | |
Carboxylic Acids Production via Electrochemical Depolymerization of Lignin
D. J. Di Marino, T.; Marks, C.; Viell, J.; Blindert, M.; Kriescher, S. M. A.; Spiess, A. C.; Wessling, M.
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https://www.doi.org/10.1002/celc.201801676 | Chemelectrochem | 2019 |