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Structural and Rheological Properties of Methacrylamide Modified Gelatin Hydrogels

Biomacromolecules · 2000 · Vol. 1(1) · pp. 31–38
An I. Van Den BulckeB. BogdanovNadine De RoozeEtienne SchachtMaria CornelissenH. Berghmans

Abstract

Dynamic shear oscillation measurements at small strain were used to characterize the viscoelastic properties and related differences in the molecular structure of hydrogels based on gelatin methacrylamide. Gelatin was derivatized with methacrylamide side groups and was subsequently cross-linked by radical polymerization via photoinitiation. The light treatment of methacrylamide gelatin solutions resulted in the production of hydrogel films with high storage modulus (G'). Mechanical spectra and thermal scanning rheology of the obtained hydrogels are described. The temperature scan of the network below and above melting point of gelatin allowed us to identify the respective contributions of chemical and physical cross-linkage to the hydrogel elastic modulus. The results indicate that the rheological properties of the gelatin-based hydrogels can be controlled by the degree of substitution, polymer concentration, initiator concentration, and UV irradiation conditions.

Hydrogels: synthesis, properties, applicationsPolysaccharides Composition and ApplicationsSpectroscopy and Chemometric AnalysesMethacrylamideGelatinSelf-healing hydrogelsDynamic mechanical analysisRheologyPolymer chemistryPolymerizationMaterials scienceViscoelasticityPolymer

MeSH terms

AcrylamidesChemistry, PhysicalCross-Linking ReagentsGelatinRheologySpectrophotometry, UltravioletThermodynamicsHydrogelsChemical Phenomena

Funding

  • Fonds Wetenschappelijk Onderzoek
  • Vlaamse regering
Citations
1,469
FWCI
1.50
field-weighted impact
References
21
Percentile
79%
vs. same field & year
Citations per year
References
The science and technology of gelatin
Journal of Colloid and Interface Science · 1978 · 706 citations
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