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Ionic liquid, ultrasound-assisted synthesis of lignin nanoparticles for barrier-enhanced all-cellulose nanocomposite films

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Amini, E. Ionic liquid, ultrasound‑assisted synthesis of lignin nanoparticles for barrier_enhanced all_cellulose nanocomposite films.pdf (2,828Mb)
 
10.1007/s00226-023-01498-y
 
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Amini, ElaheMés informacióMés informació
Valls Vidal, CristinaMés informacióMés informacióMés informació
Roncero Vivero, María BlancaMés informacióMés informacióMés informació
Document typeArticle
Defense date2023-10-05
PublisherSpringer Nature
Rights accessOpen Access
Attribution 4.0 International
This work is protected by the corresponding intellectual and industrial property rights. Except where otherwise noted, its contents are licensed under a Creative Commons license : Attribution 4.0 International
Abstract
The primary purpose of this work was to develop novel all-cellulose nanocomposite (ACNC) films by following a green approach that uses an ionic liquid as solvent and requires no additional reducing agents or stabilizers. In this way, biodegradable, UVblocking ACNC films were obtained by partially dissolving cellulose to entrap lignin nanoparticles (LNP) within. Lignin particles in proportions of 3–7 wt% were modified by sonication in an ionic liquid (IL) to obtain lignin-IL dispersions. The influence of the LNP-IL medium on the chemical, physical, and morphological properties of the resulting nanocomposites was examined, and the properties compared with those of an all-cellulose composite (ACC) film and untreated paper. The TEM technique revealed the formation of unevenly spherical LNPs as small as 5.133 ± 0.003 nm, and XRD spectroscopy a transition from cellulose I to II and an increase in the proportion of non-crystalline cellulose as a result of partial dissolution and regeneration. In addition, SEM images confirmed the deposition of LNPs onto the surface of the regenerated cellulose matrix. The incorporation of LNPs considerably enhanced the UV-blocking, oxygen and water-barrier, biodegradation, antioxidant and antibacterial properties of the films. Moreover, LNPs in proportions of 3 and 5 wt% increased tensile strength, and a proportion of 7 wt% allowed the films to block 97% of light at 280 nm and increased antioxidant activity by 68% relative to the control sample. Interestingly, a 7 wt% LNP content in the films decreased antibacterial activity against Staphylococcus aureus and Escherichia coli by about 42.85% and 63.88%, respectively. The new, multifunctional biocomposite films are suitable for various uses in cellulose-based food packaging
CitationAmini, E.; Valls, C.; Roncero, M.B. Ionic liquid, ultrasound-assisted synthesis of lignin nanoparticles for barrier-enhanced all-cellulose nanocomposite films. "Wood science and technology", 2023, vol. 57, p. 1319-1344 
URIhttp://hdl.handle.net/2117/395508
DOI10.1007/s00226-023-01498-y
ISSN1432-5225
Publisher versionhttps://link.springer.com/article/10.1007/s00226-023-01498-y
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  • Departament d’Enginyeria Gràfica i de Disseny - Articles de revista [352]
  • Doctorat en Enginyeria Tèxtil i Paperera - Articles de revista [37]
  • CELBIOTECH - Enginyeria Paperera - Articles de revista [55]
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