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Effect of Fibrous TiO Filler on the Structural, Mechanical, Barrier and Optical Characteristics of Biodegradable Maize Starch/PVA Composite Films

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Publisher Elsevier
Date 2019 Aug 3
PMID 31374278
Citations 9
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Abstract

The work focuses on producing and evaluating "green" multifunctional film materials based on a mixed eco-friendly starch/PVA matrix and filled with fibrous TiO particles formed by the ultrasound-assisted biotemplate method. Starch/PVA/TiO film-forming dispersions were prepared by heating and intensively mixing the components at the same time, and then composite films were obtained by the casting method. The influence of the TiO filler content on the morphological and structural characteristics of the composites was studied by the optical microscopy, X-ray diffraction, DSC and FTIR spectroscopy methods. The compatibility of the polymer components was improved by incorporating a small amount of the filler (0.01 and 0.05 wt% of the dry polymer weight). The dependence of tensile strength and water vapor permeability on the filler content was shown to have a maximum at the TiO concentration of 0.05 wt%. The UV- protective ability of the composite films rose as the TiO concentration increased. The presence of TiO in the biodegradable starch/PVA matrix had little effect on the soil burial biodegradation rate of the composite films. Thus, the obtained results show that fibrous TiO particles at optimum concentration of 0.01 and 0.05 wt% can improve starch/PVA films properties and extend their functionality.

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