Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10601826 | Carbohydrate Polymers | 2013 | 7 Pages |
Abstract
Microcrystalline zirconium phosphate was exfoliated by treatment with aqueous solutions of α,Ï-alkylaminoalcohols and employed for the fabrication of potato starch composite membranes. Glycerol-based and glycerol-free composite membranes, containing 5 wt% of filler, were prepared from gelatinized starch and characterized for their physico-chemical properties. Despite of a partial filler reaggregation, as revealed by XRD and SEM analysis, all the composites exhibited a significant increase in the Young's modulus with respect to the glycerol-starch membrane, up to 80% and 190% for the glycerol-based and the glycerol-free composites, respectively. For both kinds of membranes the filler delays to a large extent the starch decomposition above about 300 °C. A significant reduction in the water uptake of the composites was also observed with respect to the neat glycerol-based membrane, up to about 70% for the glycerol-free composites.
Related Topics
Physical Sciences and Engineering
Chemistry
Organic Chemistry
Authors
Monica Pica, Anna Donnadio, Valentina Bianchi, Sacha Fop, Mario Casciola,