Molecular Description of Erosion Phenomena in Biodegradable Polymers
Author(s) -
Matt J. Kipper,
Balaji Narasimhan
Publication year - 2005
Publication title -
macromolecules
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.994
H-Index - 313
eISSN - 1520-5835
pISSN - 0024-9297
DOI - 10.1021/ma047661r
Subject(s) - crystallinity , dissolution , copolymer , polymer , materials science , monomer , erosion , degradation (telecommunications) , amorphous solid , chemical engineering , kinetics , precipitation , solubility , composite material , chemistry , geology , organic chemistry , computer science , physics , meteorology , paleontology , telecommunications , quantum mechanics , engineering
A new model for the erosion kinetics of semicrystalline surface-erodible homopolymers and copolymers is presented. The model is derived for a class of surface-erodible polyanhydride copolymers, with the goal of describing erosion in terms of fundamental, elementary processes. This model is based on an accurate description of copolymer microstructure and can thereby account for the heterogeneous erosion due to microphase separation and crystallinity. In addition to accurately predicting the overall erosion profile and the release of individual monomer species, several key phenomena that occur during erosion are described. These include precipitation of slightly soluble degradation products inside the pores of the erosion zone and pH changes during erosion due to dissolution of acidic monomers and the consequent changes in monomer solubility. This model also motivates future experiments to investigate predicted phenomena such as the effects due to local changes in pH and degradation rate constants for cryst...
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