Thermoplastic starch/bentonite clay nanocomposite reinforced with vitamin B 2 : Physicochemical characteristics and release behavior

This study presents the development and characterization of a nanocomposite material, consisting of thermoplastic starch (TPS) reinforced with bentonite clay (BC) and encapsulated with vitamin B (VB). The research is motivated by the potential of TPS as a renewable and biodegradable substitute for p...

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Veröffentlicht in:International journal of biological macromolecules 2023-07, Vol.242 (Pt 1), p.124742
Hauptverfasser: Heydari, Abolfazl, KhajeHassani, Milad, Daneshafruz, Haniyeh, Hamedi, Sepideh, Dorchei, Faeze, Kotlár, Mário, Kazeminava, Fahimeh, Sadjadi, Samahe, Doostan, Farideh, Chodak, Ivan, Sheibani, Hassan
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Sprache:eng
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Zusammenfassung:This study presents the development and characterization of a nanocomposite material, consisting of thermoplastic starch (TPS) reinforced with bentonite clay (BC) and encapsulated with vitamin B (VB). The research is motivated by the potential of TPS as a renewable and biodegradable substitute for petroleum-based materials in the biopolymer industry. The effects of VB on the physicochemical properties of TPS/BC films, including mechanical and thermal properties, water uptake, and weight loss in water, were investigated. In addition, the surface morphology and chemical composition of the TPS samples were analyzed using high-resolution SEM microscopy and EDS, providing insight into the structure-property relationship of the nanocomposites. The results showed that the addition of VB significantly increased the tensile strength and Young's modulus of TPS/BC films, with the highest values observed for nanocomposites containing 5 php of VB and 3 php of BC. Furthermore, the release of VB was controlled by the BC content, with higher BC content leading to lower VB release. These findings demonstrate the potential of TPS/BC/VB nanocomposites as environmentally friendly materials with improved mechanical properties and controlled release of VB, which can have significant applications in the biopolymer industry.
ISSN:1879-0003