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Number of items: 7.

Journal Article

Grassberger, Lena, Koch, Karin, Oberhoffer, Roland, Muller, Alexander, Klemmer, Helge F. M. and Strey, Reinhard (2017). Blowing agent free generation of nanoporous poly(methylmethacrylate) materials. Colloid Polym. Sci., 295 (2). S. 379 - 390. NEW YORK: SPRINGER. ISSN 1435-1536

Koch, Karin, Geller, Sven, Acar, Kubilay, Bach, Patricia, Tsarenko, Ekaterina and Schmidt, Annette ORCID: 0000-0002-7284-7847 (2020). Creation of a PDMS Polymer Brush on SiO2-Based Nanoparticles by Surface-Initiated Ring-Opening Polymerization. Polymers, 12 (4). BASEL: MDPI. ISSN 2073-4360

Koch, Karin, Kundt, Matthias, Barkane, Anda, Nadasi, Hajnalka, Webers, Samira ORCID: 0000-0002-5602-5018, Landers, Joachim, Wende, Heiko ORCID: 0000-0001-8395-3541, Eremin, Alexey ORCID: 0000-0001-9743-6895 and Schmidt, Annette M. (2021). Superparamagnetic nanoparticles with LC polymer brush shell as efficient dopants for ferronematic phases. Phys. Chem. Chem. Phys., 23 (43). S. 24557 - 24571. CAMBRIDGE: ROYAL SOC CHEMISTRY. ISSN 1463-9084

Koch, Karin, Kundt, Matthias, Eremin, Alexey, Nadasi, Hajnalka ORCID: 0000-0001-5658-7080 and Schmidt, Annette M. (2020). Efficient ferronematic coupling with polymer-brush particles. Phys. Chem. Chem. Phys., 22 (4). S. 2087 - 2098. CAMBRIDGE: ROYAL SOC CHEMISTRY. ISSN 1463-9084

Nadasi, Hajnalka ORCID: 0000-0001-5658-7080, Corradi, Aurea, Stannarius, Ralf ORCID: 0000-0002-6836-3663, Koch, Karin, Schmidt, Annette M., Aya, Satoshi, Araoka, Fumito ORCID: 0000-0002-9387-6081 and Eremin, Alexey (2019). The role of structural anisotropy in the magnetooptical response of an organoferrogel with mobile magnetic nanoparticles. Soft Matter, 15 (18). S. 3788 - 3796. CAMBRIDGE: ROYAL SOC CHEMISTRY. ISSN 1744-6848

Seifert, Julian, Koch, Karin, Hess, Melissa and Schmidt, Annette M. (2022). Magneto-mechanical coupling of single domain particles in soft matter systems. Phys. Sci. Rev., 7 (11). S. 1237 - 1262. BERLIN: WALTER DE GRUYTER GMBH. ISSN 2365-659X

Thesis Abstract

Koch, Karin (2021). Ferronematic phases with strong coupling behavior based on liquid crystalline polymer decorated nanoparticles. Thesis Abstract, Universität zu Köln.

This list was generated on Tue Nov 26 05:13:41 2024 CET.