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Zeitschriftenartikel (7)

  1. 2019
    Zeitschriftenartikel
    Andersson Trojer, M.; Gabul-Zada, A. A.; Ananievskaia, A.; Nordstierna, L.; Östman, M.; Blanck, H.: Use of anchoring amphiphilic diblock copolymers for encapsulation of hydrophilic actives in polymeric microcapsules: methodology and encapsulation efficiency. Colloid and Polymer Science 297 (2), S. 307 - 313 (2019)
  2. Zeitschriftenartikel
    Andersson Trojer, M.; Andersson, M.; Bergenholtz, J.; Gatenholm, P.: Quantitative Grafting for Structure–Function Establishment: Thermoresponsive Poly(alkylene oxide) Graft Copolymers Based on Hyaluronic Acid and Carboxymethylcellulose. Biomacromolecules 20 (3), S. 1271 - 1280 (2019)
  3. 2018
    Zeitschriftenartikel
    Andersson Trojer, M.; Ananievskaia, A.; Gabul-Zada, A. A.; Nordstierna, L.; Blanck, H.: Polymer Core-Polymer Shell Particle Formation Enabled by Ultralow Interfacial Tension Via Internal Phase Separation: Morphology Prediction Using the Van Oss Formalism. Colloid and Interface Science Communications 25, S. 36 - 40 (2018)
  4. 2016
    Zeitschriftenartikel
    Andersson Trojer, M.; Brezesinski, G.: Self-assembly of lipid domains in the extracellular leaflet of the plasma membrane and models thereof. Current Opinion in Colloid & Interface Science 22, S. 65 - 72 (2016)
  5. Zeitschriftenartikel
    Bergek, J.; Trojer, M. A.; Uhr, H.; Nordstierna, L.: Controlled release of a microencapsulated arduous semi-hydrophobic active from coatings: Superhydrophilic polyelectrolyte shells as globally rate-determining barriers. Journal of Controlled Release 225, S. 31 - 39 (2016)
  6. 2015
    Zeitschriftenartikel
    Andersson Trojer, M.; Nordstierna, L.; Bergek, J.; Blanck, H.; Holmberg, K.; Nyden, M.: Use of microcapsules as controlled release devices for coatings. Advances in Colloid and Interface Science 222, S. 18 - 43 (2015)
  7. 2014
    Zeitschriftenartikel
    Bergek, J.; Andersson Trojer, M.; Mok, A.; Nordstierna, L.: Controlled release of microencapsulated 2-n-octyl-4-isothiazolin-3-one from coatings: Effect of microscopic and macroscopic pores. Colloids and Surfaces A: Physicochemical and Engineering Aspects 458, S. 155 - 167 (2014)
 
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