Dr. Ulrike Kraft

Profil

Derzeitige StellungProfessor W-2 und Äquivalente
FachgebietHerstellung und Eigenschaften von Funktionsmaterialien,Physikalische Chemie von Festkörpern und Oberflächen, Materialcharakterisierung
Keywordspolymer electronics, organic transistors, stretchable electronics, organic circuits, stretchable conductors

Aktuelle Kontaktadresse

LandDeutschland
OrtMainz
Universität/InstitutionMax-Planck-Institut für Polymerforschung

Gastgeber*innen während der Förderung

Prof. Dr.-Ing. Boris MurmannDepartment of Electrical Engineering, Stanford University, Stanford
Beginn der ersten Förderung01.03.2017

Programm(e)

2016Feodor Lynen-Forschungsstipendien-Programm für Postdocs

Publikationen (Auswahl)

2025Volkert, C.; Brzezinski, M.; Argudo, P. G.; Colucci, R.; Parekh, S. H.; Besenius, P.; Michels, J. J.; Kraft, U.: Enhanced Electrical Performance and Stretchability by Plasticizer‐Facilitated PEDOT:PSS Self‐Alignment. In: Advanced Science, 12, 2025, 2502853
2025Gebel, S.; Aiboudi, O.; Derakhshanfar, P.; Shin, J.; Langklotz, U.; Lissel, F.; Kraft, U.: Reversible switching through irradiation of capacitors and organic transistors employing dielectrics blended with non-ionic molecular photoswitches. In: Journal of Materials Chemistry C, 2025,
2024Colucci, R.; Koutsouras, D. A.; Morsbach, S.; Gkoupidenis, P.; Blom, P. W. M.; Kraft, U.: Organic Electrochemical Transistor-Based Immunosensors for SARS-CoV-2 Detection. In: Applied Electronic Materials, 6, 2024, 2739 - 2748
2024Gebel, S.; Aiboudi, O.; Grigorescu, V.; Ling, Z.; Marszalek, T.; Blom, P. W. M.; Ramanan, C.; Lissel, F.; Kraft, U.: Reversible Switching of Light-Gated Organic Transistors Employing Dihydroazulene/Vinylheptafulvene Photo-/Thermochromic Molecules. In: Advanced Electronic Materials, 11, 2024, 2400455
2024Volkert, C.; Colucci, R.; Berger, R.; Besenius, P.; Blom, P. W. M.; Kraft, U.: Transfer-printing of patterned PEDOT:PSS structures for bendable, stretchable and biodegradable electronics. In: Journal of Materials Chemistry C, 12, 2024, 3865 - 3872
2023Nguyen, M.; Kraft, U.; Tan, W. L.; Dobryden, I.; Broch, K.; Zhang, W.; Un, H.; Simatos, D.; Venkateshavaran, D.; McCulloch, I.; Claesson, P. M.; McNeill, C. R.; Sirringhaus, H.: Improving OFF‐State Bias‐Stress Stability in High‐Mobility Conjugated Polymer Transistors with an Antisolvent Treatment. Advanced Materials. In: Advanced Materials, 35, 2023, 2205377
2020Kraft, U.; Molina-Lopez, F.; Son, D.; Bao, Z.; Murmann, B: Ink Development and Printing of Conducting Polymers for Intrinsically Stretchable Interconnects and Circuits. In: Advanced Electronic Materials, 6, 2020, 1900681
2019F. Molina-Lopez, T. Z. Gao, U. Kraft, C. Zhu, T. Öhlund, R. Pfattner, Y. Kim, S. Wang, K. M. Johnson, Y. Yun, Z. Bao: Inkjet-printed stretchable and low voltage synaptic transistor array. In: Nature Communications , 2019, 1-10
2019U Kraft*, T. Zaki, J. N. Burghartz, E. Weber, B. Murmann, H. Klauk: Low-Voltage, High-Frequency Organic Transistors and Unipolar and Complementary Ring Oscillators on Pape. In: Advanced Electronic Materials, 2019, 1800453
2018D. Son, J. Kang, O. Vardoulis, Y. Kim, N. Matsuhisa, J. Y. Oh, J. WF To, J. Mun, T.Katsumata, Y. Liu, A. F. McGuire, M. Krason, F. Molina Lopez, J. Ham, U. Kraft, Y. Lee, Y. Yun, J. B.-H. Tok, Z. Bao: An integrated self-healable electronic skin system fabricated via dynamic reconstruction of nanostructured conducting network. In: Nature Nanotechnology, 2018, 1057-1066