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Published on: April 11, 2016
Transient and quasi-permanent networks in xyloglucan solutions
Rilton Alves de Freitas1, Vivian C Spier2, Maria Rita Sierakowski2
1LUNAM Université, Université du Maine, CNRS UMR 6283, IMMM, Avenue Olivier Messiaen, 72085 LE MANS Cedex 9, France; BioPol, Chemistry Department, Federal University of Paraná, 81531-980 Curitiba, PR, Brazil.
Abstract:
Viscoelastic properties of aqueous solutions of xyloglucan extracted from Hymenaea courbaril seeds (Jatobá gum) were investigated by rheology over a wide range of concentrations and temperatures. The polymer was characterized in dilute solutions by light scattering measurements and size exclusion chromatography. Xyloglucan formed, in semi-dilute solutions (C 0.3 wt%), a transient network with cross-links characterized by a broad distribution of lifetimes, independent of the temperature and concentration. Progressively, at higher temperatures (>60°C), a second much weaker quasi-permanent network was formed and attributed to the exchange of intra- to inter-chain bonds. The stiffness of the second network increased with decreasing temperature, but it could be easily broken by applying a relatively weak shear stress and is readily reversible on re-heating, and partially reversible on resting at 20°C.

