Prof. Dr. Dr. habil. Zoriana Danel

Profil

Derzeitige StellungProfessor W-2 und Äquivalente
FachgebietExperimentelle und Theoretische Polymerphysik,Statistische Physik, Nichtlineare Dynamik, Komplexe Systeme, Weiche und fluide Materie, Biologische Physik
KeywordsPolymers at surfaces and interfaces, theory, surfaces, soft matter, colloids
Auszeichnungen

2015: Project coordinator of Joint Research Project between Polish and Bulgarian Academy of Sciences.

2009: DAAD Fellowship, Duisburg - Essen University, Duisburg, Germany.

2009: Research grant from von Humboldt Foundation (computer grant).

2007: Grant from von Humboldt Foundation, Humboldt Fellow, Leibniz Institute for Polymer Research, Dresden, Germany.

2006: Fellowship from the Foundation for Polish Science in the Jagiellonian University, Kraków, Poland.

2003: Two times Scientific Research in the frames of the Queen Jadwiga Fellowship of the Jagiellonian University, Kraków, Poland.

2002: NATO grant in Soft Condensed Matter Department, Institute of Physical Chemistry of the Polish Academy of Sciences, Warsaw, Poland.

2000: Two times Grant from National Science Council at the Laboratory of Statistical and Computational Physics, Institute of Physics, Academia Sinica, Taipei, Taiwan.

1999: Grant from National Science Council for scientific visit of : a) Taipei University, Taiwan; b) Institute of Physics, Academia Sinica, Taipei, Taiwan; c) Synchrotron Radiation Research Center, Taiwan.

Aktuelle Kontaktadresse

LandPolen
OrtKrakow
Universität/InstitutionCracow University of Technology
Institut/AbteilungInstitute of Physics

Gastgeber*innen während der Förderung

Prof. Dr. Jens-Uwe SommerLeibniz-Institut für Polymerforschung Dresden e.V. (IPF), Dresden
Beginn der ersten Förderung01.03.2007

Programm(e)

2006Humboldt-Forschungsstipendien-Programm

Publikationen (Auswahl)

2025Maciej Dudek and Zoriana Danel: Investigation of the elastic properties of star polymers in semi-infinite space. In: Journal of Physics: Conference Series, 2952, 2025, 012016
202439. Z. Danel, J. Halun, P. Karbowniczek: Analytical and numerical investigation of star polymers in confined geometries. In: Int. J. Mol. Sci. 25, 2024, 9561
2023P. Kuterba, Z. Danel, W.Janke: Entropic force in a dilute solution of real ring polymer chains with different topological structures in a slit of two parallel walls with mixed boundary conditions. In: Cond. Matt. Phys., 26, 2023, 43605
2023P. Kuterba, H. Christiansen, Z. Danel and W. Janke: Molecular dynamics simulations of the monomer density profiles of knotted ring polymer chains confined in a slit of two parallel walls with one attractive and another repulsive surface. In: Journal of Physics: Conference Series, 2436, 2023, 012031
2021J. Halun, P. Karbowniczek, P. Kuterba, Z. Danel: Investigation of ring and star polymers in confined geometries: theory and simulations. In: Entropy, 23, 2021, 242
2020G. Lewińska, K. Khachatryan, K.S. Danel, Z. Danel, J. Sanetra, K.W. Konstanty: Investigations of the optical and thermal properties of the pyrazoloquinoline derivatives and their application for OLED design. In: Polymers, 12, 2020, 2707
2020G. Lewińska, K.S. Danel, A. Wisła-Świder, Z. Usatenko, J. Kanak, Ł. Walczak, P. Kuterba, J. Sanetra, K. W. Marszalek: Photoelectrical properties and surface examination of luminescent copolymer compounds. In: Applied Surface Science, 533, 2020, 147366
2019K.S. Danel, G. Lewi?ska, Z. Usatenko, T. Lemek and A.Wis?a-Swider: Two interesting scaffolds derived from pyrazolo[3,4-b]quinolines: synthesis and applications. In: Journal of Physics: Conference Series, 2019,
2018K.S. Danel, O. Michalski, Z. Usatenko, J. Sanetra, E.M. Nowak: Dicyanovinyl end-capped 9,10-bis(phenylethynyl) anthracenes for organic solar cells. In: Technical Transactions, 2018, 47-59
2017Z. Usatenko, P. Kuterba, H. Chamati, J. Halun: Investigation of ring polymers in confined geometries. In: Journal of Physics: Conference Series , 2017, 012002-1-012002-10
2017Z.Usatenko, P.Kuterba, H.Chamati, D.Romeis: Linear and ring polymers in confined geometries. In: Eur. Phys. J. Special Topics, 2017, 651-665
2017Z. Usatenko, J. Halun: Ring polymer chains in confined geometries: the massive field theory approach. In: J. Stat. Mech.: Theory and Experiment, 2017, 013303-1-013303-24
2016Z.Usatenko, J.Halun, P.Kuterba: Ring polymers in confined geometries. In: Condensed Matter Physics, 2016, 43602-1-43602-6
2015P. Szlachcic, K. S. Danel, M. Gryl, K. Stadnicka, Z. Usatenko, N. Nosidlak, G. Lewi?ska, J. Sanetra, W. Ku?nik: Organic light emiting diodes (OLED) based on helical structures containing 7 – membered fused rings. In: Dyes and Pigments, 2015, 184-195
2014Zoryana Usatenko: Stretching of anchored to the surface a real polymer chain in a good solvent: the massive field theory approach . In: Macromolecular Symposia, 2014, 14-21
2014Zoryana Usatenko: Stretching of polymer chain anchored to a surface: the massive field theory approach. In: J. Stat. Mech.: Theory and Experiment, 2014, P09015-1-P09015-21
2013M. Borowko, W. Rzysko, S. Sokolowski, Z. Sokolowska, and Z. Usatenko: Stretching tethered polymer chains: Density functional approach. In: J. Chem. Phys., 2013, 204707-1-204707-7
2011Zoryana Usatenko: Monomer density profiles for polymer chains in confined geometries: Massive field theory approach. In: J.Chem.Phys., 2011, 024119-1-024119-10
2011Zoryana Usatenko: Monomer density profiles of real polymer chains in confined geometries. In: J.Mol.Liq., 2011, 59-65
2009D. Romeis, Z. Usatenko : Massive field theory approach for polymer chains in confined geometries. In: AIP Conference Proceedings , 2009, 144-155
2009Dirk Romeis, Zoryana Usatenko: Polymer chains in confined geometries:Massive field theory approach. In: Phys.Rev.E, 2009, 041802-1-041802-14
2008Zoryana Usatenko, Jens-Uwe Sommer: Calculation of the Segmental Order Parameter for a Polymer Chain in Good Solvent. In: Macromolecular Theory and Simulations, 2008, 39-44
2007Zoryana Usatenko, Jens-Uwe Sommer: The influence of long-range correlated surface and near surface disorder on the process of adsorption of long-flexible polymer chains. In: Journal of Statistical Mechanics: Theory and Experiment, 2007, 10006-1-10006-29