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Elsevier, Thermochimica Acta, (618), p. 26-35, 2015

DOI: 10.1016/j.tca.2015.09.009

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Simultaneous Crystallization and Decomposition of PVA/MMT Composites during Non-Isothermal Process

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This paper is available in a repository.

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Abstract

Decomposition of poly(vinyl alcohol)/montmorillonite clay (PVA/MMT) composites during melting-crystallization was experimentally confirmed by morphology and molecular structure changes. In particular, FTIR spectra show the shift of O-H stretching band as well as enhanced intensities of C-O stretching and CH 2 rocking vibrational modes. Furthermore, Raman deconvolution indicates that C-H wagging, CH 2 -CH wagging, CH-CO bending and CH 2 wagging modes in amorphous domains were all decreased greatly. Moreover, this decomposition leads to decreased melting enthalpy, melting point, crystallization enthalpy and crystallization temperature. Crystallization analysis shows that the MMT incorporated slows down the crystallization process in the PVA matrix regardless of the nucleation capability of MMT. Despite the severe decomposition, the crystallization kinetics still corroborated well with common classical models. As a result, molecular structure changes and crystallization retardation observed in this study clearly indicate the strong effects of the thermal degradation on the non-isothermal crystallization of PVA/MMT composites.