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Porous poly(2-hydroxyethyl acrylate) hydrogels prepared by radical polymerisation with methanol as diluent
Authors:A Serrano Aroca  AJ Campillo Fernndez  JL Gmez Ribelles  M Monlen Pradas  G Gallego Ferrer  P Pissis
Affiliation:

aCenter for Biomaterials, Universidad Politécnica de Valencia, Camino de Vera s/n, E-46071 Valencia, Spain

bDepartment of Physics, National Technical University of Athens, Zografou Campus 15780 Athens, Greece

Abstract:Dynamic-mechanical and water sorption properties of porous and non-porous hydrogels have been studied as a function of their porosity and crosslinking density. Porous hydrogels with different crosslinking densities were prepared by co-polymerisation of 2-hydroxyethyl acrylate and ethyleneglycol dimethacrylate in solution in methanol. Pores were formed due to the segregation of the solvent from the polymer network during the polymerisation process. The porosity of the samples was observed by scanning electron microscopy. The pores collapse during the drying process after polymerisation but they reopen when the xerogel is immersed in liquid water. Bulk polymer networks with varying crosslinking densities were also synthesised and used as a reference in the analysis of the porous hydrogels. Water sorption from the gas phase and from the liquid phase was studied by means of equilibrium sorption isotherms and immersion experiments, respectively. Dynamic-mechanical spectroscopy conducted on the xerogels shows that the elastic modulus in the rubber-like state highly depends on the amount of solvent used in the polymerisation what is attributed to the presence of discontinuity surfaces in the xerogel although the pores are closed.
Keywords:Porous hydrogels  Water sorption  Diffusion
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