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Morphology and Properties of Polymer Composites Based on Biodegradable Polylactide/Poly[(butylene succinate)‐ co ‐adipate] Blend and Nanoclay
Author(s) -
Ojijo Vincent,
Cele Hastings,
Sinha Ray Suprakas
Publication year - 2011
Publication title -
macromolecular materials and engineering
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.913
H-Index - 96
eISSN - 1439-2054
pISSN - 1438-7492
DOI - 10.1002/mame.201100042
Subject(s) - organoclay , materials science , adipate , montmorillonite , composite material , polybutylene succinate , polymer blend , polymer , phase (matter) , scanning electron microscope , copolymer , organic chemistry , chemistry
Polymer composites based on biodegradable polylactide/poly[(butylene succinate)‐ co ‐adipate] (PLA/PBSA) blend and pristine and organically modified clays have been prepared via melt‐mixing in a batch‐mixer. Four different surfactants have been used to modify the pristine montmorillonite (MMT) clay. The weight ratio of the PLA and PBSA is 70:30, while the weight of the MMT is fixed at 6%. The surface morphologies of the unmodified and organoclay‐modified blends have been studied by field‐emission scanning electron microscopy. Results show that the domain size of the dispersed PBSA‐phase is reduced with the addition of organoclay and the extent of this reduction in the size of PBSA domain is dependent on not only the interlayer spacing of the clay but also enthalpic interaction between the clay surface and the polymer blend. The degree of dispersion of silicate layers in the blend matrix has been characterised by X‐ray diffraction. The improved adhesion between the phases and the fine morphology of the dispersed phase contributes to the improvement in the mechanical and thermal properties of the final polymer blend–organoclay composites over PLA/PBSA blend. On the basis of these results, we propose a general understanding on how the morphology of the blends is related to the final properties.

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