6533b829fe1ef96bd128a382

RESEARCH PRODUCT

E-beam crosslinked, biocompatible functional hydrogels incorporating polyaniline nanoparticles

Maria Antonietta SabatinoD. ChmielewskaClelia DispenzaA. NiconovGiuseppe Spadaro

subject

Vinyl alcoholRadiationNanocompositeAqueous solutionMaterials scienceAbsorption spectroscopyNanoparticleChitosanchemistry.chemical_compoundchemistryChemical engineeringHydrogels polyaniline nanocomposites e-beam irradiationPolymer chemistryPolyanilineSelf-healing hydrogelsSettore CHIM/07 - Fondamenti Chimici Delle TecnologieHydrogels Polyaniline Nanocomposites e-Beam irradiation UV-vis absorption spectroscopy Emission spectroscopy

description

Abstract PANI aqueous nanocolloids in their acid-doped, inherently conductive form were synthesised by means of suitable water soluble polymers used as stabilisers. In particular, poly(vinyl alcohol) (PVA) or chitosan (CT) was used to stabilise PANI nanoparticles, thus preventing PANI precipitation during synthesis and upon storage. Subsequently, e-beam irradiation of the PANI dispersions has been performed with a 12 MeV Linac accelerator. PVA-PANI nanocolloid has been transformed into a PVA-PANI hydrogel nanocomposite by radiation induced crosslinking of PVA. CT-PANI nanoparticles dispersion, in turn, was added to PVA to obtain wall-to-wall gels, as chitosan mainly undergoes chain scission under the chosen irradiation conditions. While the obtainment of uniform PANI particle size distribution was preliminarily ascertained with laser light scattering and TEM microscopy, the typical porous structure of PVA-based freeze dried hydrogels was observed with SEM microscopy for the hydrogel nanocomposites. UV−visible absorption spectroscopy demonstrates that the characteristic, pH-dependent and reversible optical absorption properties of PANI are conferred to the otherwise optically transparent PVA hydrogels. Selected formulations have been also subjected to MTT assays to prove the absence of cytotoxicity.

https://doi.org/10.1016/j.radphyschem.2011.11.043