Project Details
Self-Assembly of DNA Dendrimers in the Bulk and at Interfaces
Applicants
Professor Dr. Ulrich Jonas; Emmanuel Stiakakis, Ph.D.
Subject Area
Statistical Physics, Nonlinear Dynamics, Complex Systems, Soft and Fluid Matter, Biological Physics
Experimental Condensed Matter Physics
Theoretical Condensed Matter Physics
Experimental Condensed Matter Physics
Theoretical Condensed Matter Physics
Term
from 2016 to 2020
Project identifier
Deutsche Forschungsgemeinschaft (DFG) - Project number 314332205
Final Report Year
2022
No abstract available
Publications
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Structure and stimuli-responsiveness of all-DNA dendrimers: theory and experiment. Nanoscale, 11(4), 1604-1617.
Jochum, Clemens; Adžić, Nataša; Stiakakis, Emmanuel; Derrien, Thomas L.; Luo, Dan; Kahl, Gerhard & Likos, Christos N.
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DNA Self-Assembly Mediated by Programmable Soft-Patchy Interactions. ACS Nano, 14(10), 13524-13535.
Novak, Sanja; Zhang, Jing; Kentzinger, Emmanuel; Rücker, Ulrich; Portale, Giuseppe; Jung, Niklas; Jonas, Ulrich; Myung, Jin S.; Winkler, Roland G.; Gompper, Gerhard; Dhont, Jan K. G. & Stiakakis, Emmanuel
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Thiol-Substituted Poly(2-oxazoline)s with Photolabile Protecting Groups—Tandem Network Formation by Light. Polymers, 12(8), 1767.
Jung, Niklas; Diehl, Fiona & Jonas, Ulrich
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Self assembling cluster crystals from DNA based dendritic nanostructures. Nature Communications, 12(1).
Stiakakis, Emmanuel; Jung, Niklas; Adžić, Nataša; Balandin, Taras; Kentzinger, Emmanuel; Rücker, Ulrich; Biehl, Ralf; Dhont, Jan K. G.; Jonas, Ulrich & Likos, Christos N.
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Self‐Assembly of All‐DNA Rods with Controlled Patchiness. Small, 18(5).
Gvozden, Katarina; Novak, Ratajczak Sanja; Orellana, Alberto G.; Kentzinger, Emmanuel; Rücker, Ulrich; Dhont, Jan K. G.; De Michele, Cristiano & Stiakakis, Emmanuel
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Blunt-End Driven Re-entrant Ordering in Quasi Two-Dimensional Dispersions of Spherical DNA Brushes. ACS Nano, 16(2), 2133-2146.
Romero-Sanchez, Ivany; Pihlajamaa, Ilian; Adžić, Natasa; Castellano, Laura E.; Stiakakis, Emmanuel; Likos, Christos N. & Laurati, Marco
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PhD Thesis, "Synthesis of Telechelic Polymers as Functional Building Blocks in Material Science and Biomedical Applications Based on Thermoresponsive Poly(2-Oxazoline)s and N-Substituted Poly(Acrylamide)s", 2022, University of Siegen, Germany
Niklas Jung
