Poly(vinyl alcohol)/sulfonated polyester hydrogels produced by freezing and thawing technique: preparation and characterization



Título del documento: Poly(vinyl alcohol)/sulfonated polyester hydrogels produced by freezing and thawing technique: preparation and characterization
Revista: Materials research
Base de datos: PERIÓDICA
Número de sistema: 000312977
ISSN: 1516-1439
Autores: 1


2
Instituciones: 1Universidade Federal do Rio de Janeiro, Centro de Tecnologia, Rio de Janeiro. Brasil
2Universidade Federal de Sao Carlos, Departamento de Engenharia de Materiais, Sao Carlos, Sao Paulo. Brasil
Año:
Periodo: Ene-Mar
Volumen: 10
Número: 1
Paginación: 43-46
País: Brasil
Idioma: Inglés
Tipo de documento: Nota breve o noticia
Enfoque: Experimental
Resumen en inglés Poly(vinyl alcohol) (PVA) hydrogels were obtained by freezing (-22 °C) and thawing (+25 °C) process, resulting in a semi-interpenetrating polymer network (s-IPN) with a sulfonated polyester (PES). The cryo-gels samples were analysed in terms of its water uptake capacity (WU) as a function of pH, temperature and ionic strength. WU of all samples were relatively high, and they showed a reasonable sensitivity to both pH and ionic strength. The pH- and ionic strength dependence is attributed to the dissociation of ionizable groups of PES. The degrees of crystallinity of the cryo-gels, determined by using differential scanning calorimetry (DSC), are lower than pure PVA. Besides, decrease of glass transition temperature (Tg) of the samples when compared with pure PVA was observed. This results are due interactions between PVA and PES, which lead to an increase on the amorphous content of the hydrogels. Our results show that, despite of changes in the microstructure of the hydrogels due the presence of the polyelectrolyte, the cryo-gels reveal a long-term stability
Disciplinas: Ingeniería,
Química
Palabras clave: Ingeniería de materiales,
Química de polímeros,
Hidrogeles,
Alcohol polivinílico,
Fuerza iónica,
Temperatura,
Microestructuras
Keyword: Engineering,
Chemistry,
Materials engineering,
Polymer chemistry,
Hydrogels,
Polyvinyl alcohol,
Ionic strength,
Temperature,
Microstructures
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