Comparison of Zinc Oxide Nanoparticle Integration into Non-Woven Fabrics Using Different Functionalisation Methods for Prospective Application as Active Facemasks

Author:

Ferreira Tânia12,Vale Ana Catarina12ORCID,Pinto Alexandra C.23,Costa Rita V.1,Pais Vânia1,Sousa Diana3,Gomes Fernanda34,Pinto Graça34ORCID,Dias José Guilherme5,Moreira Inês P.12ORCID,Mota Carlos1,Bessa João1ORCID,Antunes Joana C.12ORCID,Henriques Mariana34ORCID,Cunha Fernando1,Fangueiro Raul12

Affiliation:

1. Fibrenamics, Institute of Innovation on Fiber-Based Materials and Composites, University of Minho, 4800-058 Guimarães, Portugal

2. Centre for Textile Science and Technology (2C2T), University of Minho, 4800-058 Guimarães, Portugal

3. CEB, Centre of Biological Engineering, LIBRO—Laboratório de Investigação em Biofilmes Rosário Oliveira, University of Minho, 4710-057 Braga, Portugal

4. LABBELS, Associate Laboratory, University of Minho, 4710-057 Braga, Portugal

5. Poleva—Termoconformados, S.A. Rua da Estrada 1939, 4610-744 Felgueiras, Portugal

Abstract

The development of advanced facemasks stands out as a paramount priority in enhancing healthcare preparedness. In this work, different polypropylene non-woven fabrics (NWF) were characterised regarding their structural, physicochemical and comfort-related properties. The selected NWF for the intermediate layer was functionalised with zinc oxide nanoparticles (ZnO NPs) 0.3 and 1.2wt% using three different methods: electrospinning, dip-pad-dry and exhaustion. After the confirmation of ZnO NP content and distribution within the textile fibres by morphological and chemical analysis, the samples were evaluated regarding their antimicrobial properties. The functionalised fabrics obtained via dip-pad-dry unveiled the most promising data, with 0.017 ± 0.013wt% ZnO NPs being mostly located at the fibre’s surface and capable of total eradication of Staphylococcus aureus and Escherichia coli colonies within the tested 24 h (ISO 22196 standard), as well as significantly contributing (**** p < 0.0001) to the growth inhibition of the bacteriophage MS2, a surrogate of the SARS-CoV-2 virus (ISO 18184 standard). A three-layered structure was assembled and thermoformed to obtain facemasks combining the previously chosen NWF, and its resulting antimicrobial capacity, filtration efficiency and breathability (NP EN ISO 149) were assessed. The developed three-layered and multiscaled fibrous structures with antimicrobial capacities hold immense potential as active individual protection facemasks.

Funder

European Regional Development Fund

project LH4Auto—Lighting and Heating System for Automotive

Portuguese Foundation for Science and Technology

LABBELS—Associate Laboratory in Biotechnology, Bioengineering and Microelectromechanical Systems

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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