Article ID Journal Published Year Pages File Type
9594205 Solid State Nuclear Magnetic Resonance 2005 8 Pages PDF
Abstract
Magnetic resonance microscopy was used to study the interaction of an alkaline water solvent (pH=12) with hydroxypropylmethyl cellulose (HPMC) matrices with different molecular masses Mw=12000, 86 000, and 120 000. The polymers in the form of cylinders were hydrated at 37 °C and monitored at equal time intervals with a 300 MHz Bruker AVANCE. The spatially resolved spin-spin relaxations times T2 and diffusion coefficients D of the solvent molecules within the gel layer of HPMC samples, along with changes in the dimension of the glass core of the polymers were determined as a function of hydration times. The experimental data allows us to characterize the diffusion mechanism as being Fickian and to determine the mean diffusivity values D¯ of the solvent molecules for each voxel within the gel of the studied polymers. The influence of the molecular mass of the HPMC polymers on swelling properties has been shown.
Related Topics
Physical Sciences and Engineering Chemistry Physical and Theoretical Chemistry
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