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Rare-earth ions as antibacterial agents for woven wool fabric

Shota Akioka, Shinji Hirai, Kenta Iijima, Akihiro Hirai, and Mohammed Abdullah Hamad Alharbi

Research Center of Environmentally Friendly Materials Engineering, Muroran Institute of Technology, Muroran, Japan

 

E-mail: 19096001@mmm.muroran-it.ac.jp

Received: 26 August 2021  Accepted: 26 November 2021

Abstract:

Woven fabrics were bestowed with antibacterial property by the simple adsorption of rare-earth metal ions, and the underlying mechanism was investigated using electron spin resonance (ESR) spectroscopy. The adsorption of Ce3+ ions on wool, silk, and cotton fabrics resulted in significant inhibition of Staphylococcus aureus (a gram-positive bacterium), with maximum antibacterial activities (viable bacterial count compared to the reference) of 4.7, 5.8, and 5.2, respectively. Even after 50 wash cycles, the values remained at 3.9, 2.9, and 4.8, respectively. The adsorption of La3+ and Gd3+ ions on wool fabrics also resulted in antibacterial activities of 5.8 and 5.9, respectively. In addition, wool adsorbed with Ce3+ exhibits a satisfactory antibacterial activity of 6.2 against Escherichia coli (a gram-negative bacterium). Such bacterial inhibition is attributed to Fenton reactions between the adsorbed rare-earth ions and hydrogen peroxide (H2O2) produced during bacterial metabolism, as determined from the ESR spectra collected using the spin trap method in the presence of H2O2. The safety of cerium nitrate was also investigated, and no significant issues arose, indicating that it was a safe antibacterial agent. This facile method of imparting antibacterial properties to natural fabrics may be useful for preventing infections in humans.

Keywords: Rare-earth ions; Wool; Cerium; Antibacterial activity; Adsorption; Fabric treatment

Full paper is available at www.springerlink.com.

DOI: 10.1007/s11696-021-01999-9

 

Chemical Papers 76 (6) 3557–3567 (2022)

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