Swelling and mechanical properties of polymer gels with cross-linking gradient

We report a novel approach to model the temperature dependence of the volume and elastic modulus of polymer gels with a cross-linking gradient based on the well-known Flory-Rehner (FR) theory. The proposed model consists of dividing the inhomogeneous polymer gel into an arbitrary number of independe...

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Veröffentlicht in:Soft matter 2010-01, Vol.6 (15), p.3455-3458
Hauptverfasser: Fernandes, Paulo A. L, Schmidt, Stephan, Zeiser, Michael, Fery, Andreas, Hellweg, Thomas
Format: Artikel
Sprache:eng
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Zusammenfassung:We report a novel approach to model the temperature dependence of the volume and elastic modulus of polymer gels with a cross-linking gradient based on the well-known Flory-Rehner (FR) theory. The proposed model consists of dividing the inhomogeneous polymer gel into an arbitrary number of independent and homogeneous layers that are treated independently by the FR approach. Experimental measurements of volume and elastic modulus with atomic force microscopy (AFM) on PNIPAM microgels, unexplained by the classical FR model, are in good agreement with the proposed model. A novel approach to model temperature dependence of swelling and mechanics of polymer gels with cross-linking gradients based on Flory-Rehner theory.
ISSN:1744-683X
1744-6848
DOI:10.1039/c0sm00275e