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Acid- and base-catalyzed hydrolyses of aliphatic polycarbonates and polyesters
Authors:Jae Hwan Jung  Moonhor Ree  Heesoo Kim  
Affiliation:aDepartment of Chemistry, National Research Lab for Polymer Synthesis and Physics, and Polymer Research Institute, Pohang University of Science and Technology, Pohang 790-784, Republic of Korea;bDepartment of Microbiology, Dongguk University College of Medicine, Gyongju 780-714, Republic of Korea
Abstract:Poly(propylene carbonate) (PPC) was synthesized by the zinc glutarate catalyzed copolymerization of carbon dioxide and propylene oxide (PO). Hydrolytic degradability of the PPC polymer was examined in tetrahydrofuran solutions containing 10 wt.% acidic or basic aqueous solutions of varying pH using viscometry and GPC analysis. Further, the hydrolysis behaviors of all PPC solutions were compared with those of poly(var epsilon-caprolactone) (PCL) and poly(d,l-lactic acid) (PLA). All polymers studied show higher degradability in strong basic conditions than in strong acidic conditions, but very low degradability in moderate acidic, basic and neutral conditions. Moreover, PPC is degraded less in strong acidic conditions than the polyesters, while in strong basic conditions, the polycarbonate is more easily degraded. The difference in degradabilities of these polymers in acidic conditions is associated with the different nucleophilicities of their carbonyl oxygen atoms, while in basic conditions the differences are associated with the different electrophilicities of the corresponding carbonyl carbon atoms. With regard to the hydrolysis results and the structural and chemical nature of the polymer backbones, degradation mechanisms are proposed for the acid- and base-catalyzed hydrolyses of PPC, PCL and PLA.
Keywords:CO2 copolymerization  Poly(propylene carbonate)  Poly(sciencedirect  com/scidirimg/entities/25b  -caprolactone)" target="_blank">gif" alt="var epsilon" title="var epsilon" border="0">-caprolactone)  d" target="_blank">Poly(d  l-lactic acid)" target="_blank">l-lactic acid)  Acid-catalyzed hydrolysis  Base-catalyzed hydrolysis
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