A PPC nanocomposite with highly exfoliated nanoclay was prepared through a solution intercalation process. The highly exfoliated nanoclay contributed to a viscosity reduction and a slight reduction in molecular weight of PPC, with the minimum or critical concentration of nanoclay found to be between about 0.5% and 2.0%. The PPC nanocomposites with lower viscosity showed excellent precursors for making PU coating materials, which exhibited higher anticorrosive properties compared to non-modified PU coatings.
Polypropylene carbonate (PPC) derived from carbon dioxide has been used as a precursor for the synthesis of polyurethane (PU). The high viscosity of the PPC is the key parameter hindering its processability during PU synthesis. Herein, a PPC nanocomposite with highly exfoliated nanoclay was prepared through a solution intercalation process. A wide range of nanoclay concentrations incorporated into the PPC were studied. The impacts of the nanoclay on the PPC were investigated in order to maintain the polymer structure while improving its physical properties. The characterizations of PPC nanocomposites showed that the highly exfoliated nanoclay contributed to a viscosity reduction, and a slight reduction in the molecular weight. The polymer degradation was indicated by the formation of cyclic propylene carbonate. The minimum or critical concentration of nanoclay was found to be between similar to 0.5 and 2.0 wt %. Within this range, the polymer degradation is minimal. The PPC nanocomposites with a lower viscosity showed excellent precursors for making PU coating materials. The PU coating derived from the PPC nanocomposite has higher anticorrosive properties in comparison with the non-modified PU coating.
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