Fabrication and characterizations of electrospun cellulose/CeO2 nanocomposite membranes
Journal article
Authors/Editors
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Publication Details
Author list: Aeakartit Boonprasertpoh, Prin Chantarangkul, Satita Thiangtham, Boonyarach Kitiyanan, Pirom Noisumdaeng,
Jatuphorn Wootthikanokkhan, Vissanu Meeyoo
Publisher: Springer
Publication year: 2024
Journal: Cellulose (0969-0239)
Volume number: 31
Start page: 2957
End page: 2973
Number of pages: 17
ISSN: 0969-0239
eISSN: 1572-882X
URL: https://link.springer.com/article/10.1007/s10570-024-05788-x
Languages: English-United States (EN-US)
Abstract
Nanocomposite membranes based on electrospun-cellulose (EC) composites combined with cerium oxide (CeO2) nanoparticles (NPs) were fabricated by electrospinning using cellulose acetate (CA) as a precursor. CeO2 NPs were initially synthesized via cellulose nitrate template. After removing the template and any residual by calcination at 500 °C, the nanocubic CeO2 NPs were obtained with average sizes of 20.40 ± 3.8 nm and then incorporated into cellulose nanofibers (CNFs) by mixing with CA solution. Subsequently, the obtained CA/CeO2 nanocomposite membrane was formed via the electrospinning and then converted to the EC/CeO2 nanocomposite membrane by being treated with a NaOH ethanolic solution. FTIR analysis confirmed the stepwise conversion of the acetyl group in CA structure to the hydroxyl groups of cellulose. The fabricated nanocomposite membranes characterized via FE-SEM and AFM, evaluating that the addition of CeO2 NPs incorporated into the fabricated CNFs resulted in changing their average fiber diameter without the exfoliation of CeO2 NPs. The average fiber diameter of the EC and EC/CeO2 nanocomposite membranes with 0.5, 1.0, and 1.5 wt% CeO2 contents was estimated to be 206 ± 66, 189 ± 47, 178 ± 52, and 147 ± 108 nm, respectively. However, it was observed that, at 1.5 wt% of CeO2 NP contents, the bead-like formation appeared, leading to enhancement of water uptake capacities up to 260.11 ± 15.93%, meanwhile the EC membrane exhibited the water uptake capacities of 203.77 ± 11.11%. In addition, the antibacterial activity of EC nanocomposite membranes was conducted against Staphylococcus aureus (S.Staphylococcus aureus (S. aureus) and Escherichia coli (E. coli). The results indicated that incorporating
CeO2 NPs into the CNF matrix via electrospinning does not exhibit the distinct antibacterial activities
of EC. The effect of the CeO2 NPs incorporated in EC nanocomposite membranes was further discussed aureus) and Escherichia coli (E. coli). The results indicated that incorporating
CeO2 NPs into the CNF matrix via electro spinning does not exhibit the distinct antibacterial activities of EC. The effect of the CeO2 NPs incorporated in EC nanocomposite membranes was further discussed.
Keywords
cellulose, electrospinning, nanocomposites, nanofibers