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Título: Enhancing barrier and antioxidant properties of nanocellulose films for coatings and active packaging: a review.
Autor: LIMA, G. G. de
ZAKALUK, I. C. B.
ARTNER, M. A.
PEDRO, A. C.
CADEMARTORI, P. H. G. de
MUNIZ, G. I. B. de
MAGALHAES, W. L. E.
Afiliación: GABRIEL GOETTEN DE LIMA, PRISM RESEARCH INSTITUTE; IZABELLI CRISTIANI BARCELAR ZAKALUK, UNIVERSIDADE FEDERAL DO PARANÁ; MIRELA ANGELITA ARTNER, NORTH CAROLINA STATE UNIVERSITY; ALESSANDRA CRISTINA PEDRO, BOLSISTA NA EMBRAPA FLORESTAS; PEDRO HENRIQUE GONZALEZ DE CADEMARTORI, UNIVERSIDADE FEDERAL DO PARANÁ; GRACIELA INES BOLZON DE MUNIZ, UNIVERSIDADE FEDERAL DO PARANÁ; WASHINGTON LUIZ ESTEVES MAGALHAES, CNPF.
Año: 2025
Referencia: ACS Applied Nano Materials, v. 8, n. 9, 2025.
Descripción: Cellulose, a natural biopolymer, offers strong potential for sustainable packaging due to its impressive mechanical, thermal, and barrier properties. However, its high hydrophilicity remains a key challenge for industrial applications. This review delves into both chemical and physical methods to enhance nanocellulose’s hydrophobicity while also exploring the incorporation of reinforcing fillers like antioxidants, antibacterial agents (e.g., tannins, lignin), and nanoclays to improve functionality in active packaging. Additionally, advanced surface modifications using compounds, such as stearic acid, silanes, and treatments, such as cold plasma, are discussed. By providing detailed insights into these techniques and materials, this review serves as a practical guide for researchers, especially in laboratory settings, to assess the feasibility of applying these innovations in their own work. Ultimately, it aims to advance the development of nanocellulose-based packaging solutions, offering a balance among sustainability, enhanced performance, and practical scientific guidance.
Thesagro: Celulose
Embalagem
NAL Thesaurus: Nanotechnology
Hydrophobicity
Cellulose
Biopolymers
Packaging
Palabras clave: Antioxidant biomaterial
Biomaterial antioxidante
Biopolímeros
Sistema multicamada
Hidrofobicidade
Nanocelulose
ISSN: 2574-0970
DOI: https://doi.org/10.1021/acsanm.4c04805
Tipo de Material: Artigo de periódico
Acceso: openAccess
Aparece en las colecciones:Artigo em periódico indexado (CNPF)

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