Prof. Dr. Igor Potemkin
The main activity of the group of Prof. Dr. Igor I. Potemkin is concentrated on theoretical studies and computer simulations of self-organization of polymers into complex structures. These studies are conducted in close cooperation with experimental groups of the DWI. In addition to polymers of “simple” primary structure (like linear block copolymers), more complex architectures (arborescent, comb-, gel-like, etc.) and sequences of monomer units (gradient) are studied. Investigations are focused on effects of micelle and gel formation in solutions, microphase segregation in concentrated solutions, melts and thin films. Statistical physics of polyelectrolyte solutions and interpolyelectrolyte complexes is of the particular interest for the group. Special attention is paid to the study of interactions of polyelectrolyte nano- and microgels of various structures with oppositely charged polyelectrolytes. Low-molecular-weight ionic liquids, liquid-crystalline polymers and polymer based molecular motors are also studied.
Projects
Publications
Titel/Autoren | DOI-LINK | Magazine | Jahre | |
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Amphiphilic Arborescent Copolymers and Microgels: From Unimolecular Micelles in a Selective Solvent to the Stable Monolayers of Variable Density and Nanostructure at a Liquid Interface
R. A. Gumerov, A. A. Rudov, W. Richtering, M. Moller and I. I. Potemkin
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https://www.doi.org/10.1021/acsami.7b00772 | Acs Applied Materials & Interfaces | 2017 | |
Compression and Ordering of Microgels in Monolayers Formed at Liquid-Liquid Interfaces: Computer Simulation Studies
N. Bushuev, R. Gumerov, S. Bochenek, A. Pich, W. Richtering and I. Potemkin
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https://doi.org/10.1021/acsami.0c01600 | ACS Applied Materials & Interfaces | 2020 | |
Mixing of Two Immiscible Liquids within the Polymer Microgel Adsorbed at Their Interface
R. A. Gumerov, A. M. Rumyantsev, A. A. Rudov, A. Pich, W. Richtering, M. Moller and I. I. Potemkin
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https://www.doi.org/10.1021/acsmacrolett.6b00149 | Acs Macro Letters | 2016 | |
Morphology-Controlled Kinetics of Solvent Uptake by Block Copolymer Films in Nonselective Solvent Vapors
A. Stenbock-Fermor, A. A. Rudov, R. A. Gumerov, L. A. Tsarkova, A. Böker, M. Möller and I. I. Potemkin
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https://www.doi.org/10.1021/mz500347n | ACS Macro Letters | 2014 | |
Scavenging One of the Liquids versus Emulsion Stabilization by Microgels in a Mixture of Two Immiscible Liquids
M. V. Anakhov, R. A. Gumerov, W. Richtering, A. Pich and I. I. Potemkin*
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https://doi.org/10.1021/acsmacrolett.0c00191 | ACS Macro Letters | 2020 | |
Anisotropic Microgels by Supramolecular Assembly and Precipitation Polymerization of Pyrazole-Modified Monomers
F. Grabowski, V. S. Petrovskii, F. Fink, D. E. Demco, S. Herres-Pawlis, I. I. Potemkin and A. Pich
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https://doi.org/10.1002/advs.202204853 | Advanced Science | 2022 | |
Ionic Combisomes: A New Class of Biomimetic Vesicles to Fuse with Life
A. M. Wagner, J. Quandt, D. Söder, M. Garay-Sarmiento, A. Joseph, V. S. Petrovskii, L. Witzdam, T. Hammoor, P. Steitz, T. Haraszti, I. I. Potemkin, N. Y. Kostina, A. Herrmann and C. Rodriguez-Emmenegger
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https://doi.org/10.1002/advs.202200617 | Advanced Science | 2022 | |
Selenium-Modified Microgels as Bio-Inspired Oxidation Catalysts
K. H. Tan, W. Xu, S. Stefka, D. E. Demco, T. Kharandiuk, V. Ivasiv, R. Nebesnyi, V. S. Petrovskii, Potemkin, II and A. Pich
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https://www.doi.org/10.1002/anie.201901161 | Angew Chem Int Ed Engl | 2019 | |
Artificial Phase-Transitional Underwater Bioglue with Robust and Switchable Adhesion Performance
L. Xiao, Z. Wang, Y. Sun, B. Li, B. Wu, C. Ma, V. S. Petrovskii, X. Gu, D. Chen, I. I. Potemkin, A. Herrmann, H. Zhang and K. Liu
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https://doi.org/10.1002/anie.202102158 | Angewandte Chemie International Edition | 2021 | |
Synthesis of Polyampholyte Janus-like Microgels by Coacervation of Reactive Precursors in Precipitation Polymerization
W. Xu, A. Rudov, A. Oppermann, S. Wypysek, M. Kather, R. Schröder, W. Richtering, I. I. Potemkin, D. Wöll and A. Pich
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https://www.doi.org/10.1002/anie.201910450 | Angewandte Chemie International Edition | 2019 | |
Tuning the Elasticity of Nanogels Improves Their Circulation Time by Evading Immune Cells
P. Desai, R. Rimal, A. Florea, R. A. Gumerov, M. Santi, A. S. Sorokina, S. E. M. Sahnoun, T. Fischer, F. M. Mottaghy, A. Morgenroth, A. Mourran, I. I. Potemkin, M. Möller and S. Singh
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https://doi.org/10.1002/anie.202116653 | Angewandte Chemie International Edition | 2022 | |
Distribution of Ionizable Groups in Polyampholyte Microgels Controls Interactions with Captured Proteins: From Blockade and "Levitation" to Accelerated Release
W. J. Xu, A. A. Rudov, R. Schroeder, I. V. Portnov, W. Richtering, I. I. Potemkin and A. Pich
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https://doi.org/10.1021/acs.biomac.8b01775 | Biomacromolecules | 2019 |