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Viscoelasticity of pore-spanning polymer membranes derived from giant polymersomes

Soft Matter. Bd. 6. H. 11. Royal Society of Chemistry (RSC) 2010 S. 2508

Erscheinungsjahr: 2010

Publikationstyp: Zeitschriftenaufsatz

Sprache: Englisch

Schlüsselwörter:

  • viscoelastic properties
  • poly(butadiene)-block-poly(ethylene oxide)
  • microstructured porous silicon
  • cross-linked membranes

Doi/URN: 10.1039/b924650a

Volltext über DOI/URN

Geprüft:Bibliothek

Inhaltszusammenfassung


We show how the viscoelastic properties of membranes formed from poly(butadiene)-block-poly(ethylene oxide) (PB130-b-PEO66) block copolymers can be locally accessed by atomic force microscopy. Polymer membranes are spread on microstructured porous silicon substrates from PB130-b-PEO66 vesicles by decreasing the osmotic pressure of the solution. Local viscoelastic properties of the pore-spanning polymer membranes were obtained from site-specific indentation experiments. Elastic moduli of these...We show how the viscoelastic properties of membranes formed from poly(butadiene)-block-poly(ethylene oxide) (PB130-b-PEO66) block copolymers can be locally accessed by atomic force microscopy. Polymer membranes are spread on microstructured porous silicon substrates from PB130-b-PEO66 vesicles by decreasing the osmotic pressure of the solution. Local viscoelastic properties of the pore-spanning polymer membranes were obtained from site-specific indentation experiments. Elastic moduli of these membranes were in the order of few MPa, while the elastic moduli of cross-linked membranes considerably increased to few GPa. Furthermore, the energy dissipation and velocity dependence of the hysteresis between indentation and relaxation were quantified and compared with a modified Kelvin–Voigt model. Relaxation times were in the order of hundreds of milliseconds explaining why the stiffness of the membrane increases with increasing indentation velocity.» weiterlesen» einklappen

Autoren


Kocun, Marta (Autor)
Mueller, Waltraut (Autor)
Mey, Ingo (Autor)
Geil, Burkhard (Autor)
Steinem, Claudia (Autor)
Janshoff, Andreas (Autor)

Klassifikation


DDC Sachgruppe:
Allgemeines, Wissenschaft

Verknüpfte Personen


Michael Maskos