Abstract

The effect of cadmium phenylmalonate (PMA- Cd) as a novel nucleating agent on the crystallization be- haviors and spherulitic morphology of poly(lactic acid) (PLA) as well as non-isothermal crystallization kinetics of the nucleated PLA were studied by means of differential scanning calorimetry and polarized light microscopy. The results showed that PMA-Cd served as an effective nu- cleating agent to accelerate the crystallization rate of PLA. The presence of PMA-Cd significantly increased the number and decreased the size of the spherulites. The non- isothermal crystallization kinetics of the nucleated PLA was well described by Mo's model. The activation energies (DE) of non-isothermal crystallization were calculated by Kissinger's method. The crystallization rate of PLA/0.5 % PMA-Cd sample was faster than that of PLA/0.2 % PMA- Cd sample, while the DE of the former was greater than that of the latter. The nucleation mechanism between PMA-Cd and PLA was satisfactorily explained by dimen- sional lattice-matching criterion.

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