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Influence of the hydrophilicity of montmorillonite on structure and properties of thermoplastic wheat starch/montmorillonite bionanocomposites
被引:25
作者:
Derungs, Irene
[1
]
Rico, Maite
[1
]
Lopez, Joaquin
[1
]
Barral, Luis
[1
,2
]
Montero, Belen
[1
]
Bouza, Rebeca
[1
]
机构:
[1] Univ A Coruna, Escuela Univ Politecn, Dept Fis & Ciencias Tierra, Grp Polimeros, Avda 19 Febrero S-N, Ferrol 15471, Spain
[2] Univ Clin Hosp, Inst Biomed Res IDIS SERGAS, Cellular & Mol Cardiol Res Unit, Santiago De Compostela, Spain
关键词:
bionanocomposites;
montmorillonite clay;
thermoplastic starch;
STARCH FILMS;
NANOCOMPOSITES;
BARRIER;
D O I:
10.1002/pat.5450
中图分类号:
O63 [高分子化学(高聚物)];
学科分类号:
070305 ;
080501 ;
081704 ;
摘要:
The increasing environmental pollution with petroleum-based plastics has advanced research on biodegradable polymers. Thermoplastic starch (TPS) is one promising candidate due to wide availability from various renewable sources, low cost and biodegradability. However, TPS has significant shortcomings, as high water sensitivity and low mechanical properties. An approach to overcome these drawbacks is adding nanofillers as reinforcement of the starch matrix. Among the nanofillers, montmorillonite clays have the advantages of a wide availability, low cost, versatility and environmental friendliness. Bionanocomposites based on wheat starch plasticized with glycerol and reinforced with three types of montmorillonite nanoclays, one natural (Cloisite Na+) and two organomodified (Cloisite 30B and Cloisite 10A), were prepared by melt processing. The effect of nanoclay type and amount on processing properties, thermal stability, dynamic mechanical properties and water absorption was widely investigated. The properties strongly depended on the dispersion state of the nanoclay in the TPS matrix. The dispersion improved with the hydrophilicity of the nanoclay. Cloisite Na+, the most hydrophilic nanoclay, was the most effective in reinforcing TPS, improving the thermal stability and the dynamic mechanical properties, and showing a greater resistance to water absorption in normal humidity environments. Bionanocomposites of TPS andCloisite Na+ can be a good alternative for use in packaging applications.
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页码:4479 / 4489
页数:11
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