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Carbon Nanoparticle-Loaded PLA Nanofibers via Electrospinning for Food Packaging

Articolo
Data di Pubblicazione:
2025
Abstract:
The development of nanocomposite materials for food packaging applications requires a precise balance of material functionality, safety, and regulatory compliance. In this work, the design, manufacturing, optimization, feasibility, and safety profile of polylactic acid (PLA) nanofibers filled with biocompatible carbon nanoparticles (CNP) and copper-loaded (CNP-Cu) nanoparticles by electrospinning are presented. To ensure nanoparticle compatibility with the PLA solvent system and achieve a uniform dispersion of the nanoparticles within nanofibers, dynamic light scattering analysis was employed, while the incorporation efficiency was demonstrated by building a novel UV–vis spectroscopy analytical method. Morphological analysis, performed through FE-SEM and TEM, confirmed the homogeneous distribution of CNP and CNP-Cu nanoparticles without aggregation. Migration studies in aqueous food simulants were also carried out to assess the material’s safety profile. The results showed minimal nanoparticle release, and the calculated copper migration was well within the limits set by European Commission Regulation (EU) No. 10/2011 for food contact materials.
Tipologia CRIS:
03A-Articolo su Rivista
Keywords:
carbon nanoparticles; copper; electrospinning; food packaging; manufacturing; polylactic acid
Elenco autori:
Di Matteo, Pietro; Barbero, Francesco; Giménez-Torres, Enrique; Fenoglio, Ivana; Destro, Elena; Brunella, Valentina; Sonseca Olalla, Águeda
Autori di Ateneo:
BARBERO FRANCESCO
BRUNELLA Valentina Giovanna
FENOGLIO Ivana
Link alla scheda completa:
https://iris.unito.it/handle/2318/2058410
Link al Full Text:
https://iris.unito.it/retrieve/handle/2318/2058410/1574106/Di%20Matteo%20et%20al.%202025.pdf
Pubblicato in:
JOURNAL OF COMPOSITES SCIENCE
Journal
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Aree Di Ricerca

Settori (2)


PE11_4 - Engineering of polymers and plastics - (2024)

PE11_9 - Nanomaterials engineering, e.g. nanoparticles, nanoporous materials, 1D & 2D nanomaterials - (2024)
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