UniSysCat Publications

  • A Strep‐Tag Imprinted Polymer Platform for Heterogenous Bio(electro)catalysis, A. Yarman, A. F. T. Waffo, S. Katz, C. Bernitzky, N. Kovács, P. Borrero, S. Frielingsdorf, E. Supala, J. Dragelj, S. Kurbanoglu, B. Neumann, O. Lenz, M. A. Mroginski, R. E. Gyurcsányi, U. Wollenberger, F. W. Scheller, G. Caserta, I. Zebger, Angewandte Chemie International Edition 2024, 10.1002/anie.202408979
  • Eine Strep‐Tag‐geprägte Polymer‐Plattform für die heterogene Bio(elektro)katalyse, A. Yarman, A. F. T. Waffo, S. Katz, C. Bernitzky, N. Kovács, P. Borrero, S. Frielingsdorf, E. Supala, J. Dragelj, S. Kurbanoglu, B. Neumann, O. Lenz, M. A. Mroginski, R. E. Gyurcsányi, U. Wollenberger, F. W. Scheller, G. Caserta, I. Zebger, Angewandte Chemie 2024, 136, 10.1002/ange.202408979
  • How an ACE2 mimicking epitope-MIP nanofilm recognizes template-related peptides and the receptor binding domain of SARS-CoV-2, X. Zhang, A. T. Waffo, A. Yarman, N. Kovács, Z. Bognár, U. Wollenberger, I. M. El-Sherbiny, R. Y. A. Hassan, F. F. Bier, R. E. Gyurcsányi, I. Zebger, F. W. Scheller, Nanoscale 2022, 14, 18106–18114, 10.1039/D2NR03898F
  • “Out of Pocket” Protein Binding—A Dilemma of Epitope Imprinted Polymers Revealed for Human Hemoglobin, X. Zhang, G. Caserta, A. Yarman, E. Supala, A. F. T. Waffo, U. Wollenberger, R. E. Gyurcsányi, I. Zebger, F. W. Scheller, Chemosensors 2021, 9, 128–0, 10.3390/chemosensors9060128
  • Insights in electrosynthesis, target binding, and stability of peptide-imprinted polymer nanofilms, G. Caserta, X. Zhang, A. Yarman, E. Supala, U. Wollenberger, R. E. Gyurcsányi, I. Zebger, F. W. Scheller, Electrochimica Acta 2021, 381, 138236–0, 10.1016/j.electacta.2021.138236
  • Bimetallic Mn, Fe, Co, and Ni Sites in a Four-Helix Bundle Protein: Metal Binding, Structure, and Peroxide Activation, J. H. Jeoung, S. Rünger, M. Haumann, B. Neumann, F. Klemke, V. Davis, A. Fischer, H. Dau, U. Wollenberger, H. Dobbek, Inorganic Chemistry 2021, 60, 17498–17508, 10.1021/acs.inorgchem.1c01919
  • Electrochemical Trimethylamine N-Oxide Biosensor with Enzyme-Based Oxygen-Scavenging Membrane for Long-Term Operation under Ambient Air, A. F. T. Waffo, B. Mitrova, K. Tiedemann, C. Iobbi-Nivol, S. Leimkühler, U. Wollenberger, Biosensors 2021, 11, 98–0, 10.3390/bios11040098
  • Voltammetry and Single‐Molecule In Situ Scanning Tunnelling Microscopy of the Redox Metalloenzyme Human Sulfite Oxidase, J. Yan, E. E. Frøkjær, C. Engelbrekt, S. Leimkühler, J. Ulstrup, U. Wollenberger, X. Xiao, J. Zhang, ChemElectroChem 2021, 8, 164–171, 10.1002/celc.202001258
  • Electrochemical Biosensors Employing Natural and Artificial Heme Peroxidases on Semiconductors, B. Neumann, U. Wollenberger, Sensors 2020, 20, 3692–0, 10.3390/s20133692
  • Three-Dimensional Bioelectrodes Utilizing Graphene Based Bioink, R. M. L. Werchmeister, J. Tang, X. Xiao, U. Wollenberger, H. A. Hjuler, J. Ulstrup, J. Zhang, Journal of The Electrochemical Society 2019, 166, 10.1149/2.0261916jes
  • Electrochemical MIP Sensor for Butyrylcholinesterase, G. Ozcelikay, S. Kurbanoglu, X. Zhang, C. Kosak Soz, U. Wollenberger, S. A. Ozkan, A. Yarman, F. W. Scheller, Polymers 2019, 11, 1970–0, 10.3390/polym11121970
  • Bio‐Electrosynthesis of Vectorially Imprinted Polymer Nanofilms for Cytochrome P450cam, K. J. Jetzschmann, S. Tank, G. Jágerszki, R. E. Gyurcsányi, U. Wollenberger, F. W. Scheller, ChemElectroChem 2019, 6, 1818–1823, 10.1002/celc.201801851