18 Publikationen

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  • [18]
    2022 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2967123
    Fandrich, P., et al., 2022. Core–shell microgels synthesized in continuous flow: deep insight into shell growth using temperature-dependent FTIR. Soft Matter, 18(29), p 5492-5501.
    PUB | DOI | Download (ext.) | WoS | PubMed | Europe PMC
     
  • [17]
    2021 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2952634
    Bookhold, J., et al., 2021. Smart membranes by electron beam cross-linking of copolymer microgels. Soft Matter, 17(8), p 2205-2214.
    PUB | DOI | WoS | PubMed | Europe PMC
     
  • [16]
    2021 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2948920 OA
    Fandrich, P., et al., 2021. Acrylamide precipitation polymerization in a continuous flow reactor: an in situ FTIR study reveals kinetics. Colloid and Polymer Science, 229(2), p 221-232.
    PUB | PDF | DOI | WoS
     
  • [15]
    2021 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2954822 OA
    Schmid, A.J., et al., 2021. Flexible Sample Environments for the Investigation of Soft Matter at the European Spallation Source: Part I—The In Situ SANS/DLS Setup. Applied Sciences, 11(9): 4089.
    PUB | PDF | DOI | WoS
     
  • [14]
    2021 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2955350 OA
    Hannappel, Y., et al., 2021. Smart Microgels from Unconventional Acrylamides. Macromolecular Chemistry and Physics, 222(13): 2100067.
    PUB | PDF | DOI | WoS
     
  • [13]
    2021 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2955334 OA
    Kühnhammer, M., et al., 2021. Flexible Sample Environments for the Investigation of Soft Matter at the European Spallation Source: Part III—The Macroscopic Foam Cell. Applied Sciences, 11(11): 5116.
    PUB | PDF | DOI | WoS
     
  • [12]
    2021 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2954437 OA
    Widmann, T., et al., 2021. Flexible Sample Environment for the Investigation of Soft Matter at the European Spallation Source: Part II—The GISANS Setup. Applied Sciences, 11(9): 4036.
    PUB | PDF | DOI | WoS
     
  • [11]
    2021 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2953085
    Großkopf, S., et al., 2021. Pluronic-based lamellar phases: influence of polymer architecture on bilayer bending elasticity. Molecular Physics, : e1893400.
    PUB | DOI | WoS
     
  • [10]
    2020 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2943782
    Sabadasch, V., et al., 2020. Core–shell microgels as thermoresponsive carriers for catalytic palladium nanoparticles. Soft Matter, 16(23), p 5422-5430.
    PUB | DOI | WoS | PubMed | Europe PMC
     
  • [9]
    2020 | Dissertation | PUB-ID: 2946230
    Wiehemeier, L., 2020. Soft Matter Systems Analysed with Interferometric Methods, Bielefeld: Universität Bielefeld.
    PUB
     
  • [8]
    2020 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2941088
    Cors, M., et al., 2020. Contrast variation SANS measurement of shell monomer density profiles of smart core-shell microgels. Soft matter, 16(7), p 1922-1930.
    PUB | DOI | WoS | PubMed | Europe PMC
     
  • [7]
    2019 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2934166
    Wiehemeier, L., et al., 2019. Swelling behaviour of core–shell microgels in H2O, analysed by temperature-dependent FTIR spectroscopy. Physical Chemistry Chemical Physics, 21(2), p 572-580.
    PUB | DOI | WoS | PubMed | Europe PMC
     
  • [6]
    2019 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2934769 OA
    Cors, M., et al., 2019. Deuteration-Induced Volume Phase Transition Temperature Shift of PNIPMAM Microgels. Polymers, 11(4): 620.
    PUB | PDF | DOI | WoS | PubMed | Europe PMC
     
  • [5]
    2019 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2937750 OA
    Cors, M., et al., 2019. Spatial distribution of core monomers in acrylamide-based core-shell microgels with linear swelling behaviour. Scientific reports, 9(1): 13812.
    PUB | PDF | DOI | WoS | PubMed | Europe PMC
     
  • [4]
    2019 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2936816
    Wiehemeier, L., et al., 2019. Synthesis of smart dual-responsive microgels: correlation between applied surfactants and obtained particle morphology. Soft Matter, 15(28), p 5673-5684.
    PUB | DOI | WoS | PubMed | Europe PMC
     
  • [3]
    2018 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2933308
    Cors, M., et al., 2018. Determination of Internal Density Profiles of Smart Acrylamide-Based Microgels by Small-Angle Neutron Scattering: A Multishell Reverse Monte Carlo Approach. LANGMUIR, 34(50), p 15403-15415.
    PUB | DOI | WoS | PubMed | Europe PMC
     
  • [2]
    2017 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2913454
    Brändel, T., et al., 2017. Microphase separation of smart double-responsive copolymer microgels studied by local fluorescence probes. Polymer, 125, p 110-116.
    PUB | DOI | WoS
     
  • [1]
    2017 | Zeitschriftenaufsatz | Veröffentlicht | PUB-ID: 2908558 OA
    Dreischmeier, K., et al., 2017. Boreal pollen contain ice-nucleating as well as ice-binding ‘antifreeze’ polysaccharides. Scientific Reports, 7(1): 41890.
    PUB | PDF | DOI | WoS | PubMed | Europe PMC
     

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