Boosting Copper Biocidal Activity by Silver Decoration and Few‐Layer Graphene in Coatings on Textile Fibers

Author:

Štular Danaja1,de Velde Nigel Van1,Drinčić Ana1,Kogovšek Polona2,Filipić Arijana2,Fric Katja2,Simončič Barbara3,Tomšič Brigita3,Chouhan Raghuraj S.4,Bohm Sivasambu5,Kr. Verma Suresh67,Panda Pritam Kumar6,Jerman Ivan1ORCID

Affiliation:

1. National Institute of Chemistry Hajdrihova 19 Ljubljana 1001 Slovenia

2. National Institute of Biology Večna pot 111 Ljubljana 1000 Slovenia

3. Faculty of Natural Sciences and Engineering University of Ljubljana Aškerčeva 12 Ljubljana 1000 Slovenia

4. Institute “Jožef Stefan” Department of Environmental Sciences Jamova 39 Ljubljana 1000 Slovenia

5. Imperial College London South Kensington Campus London SW7 2AZ UK

6. Ångströmlaboratoriet Lägerhyddsv 1 Box 530 Uppsala 75121 Sweden

7. School of Biotechnology KIIT University Bhubaneswar 751024 India

Abstract

AbstractThe outbreak of the Coronavirus disease 2019 (COVID‐19) pandemic has highlighted the importance of developing antiviral surface coatings that are capable of repelling pathogens and neutralizing them through self‐sanitizing properties. In this study, a novel coating design based on few‐layer graphene (FLG) is proposed and silver‐decorated micro copper flakes (CuMF) that exhibit both antibacterial and antiviral properties. The role of sacrificial anode surfaces and intrinsic graphene defects in enhancing the release of metal ions from CuMF embedded in water‐based binders is investigated. In silico analysis is conducted to better understand the molecular interactions of pathogen‐repelling species with bacterial or bacteriophage proteins. The results show that the optimal amount of CuMF/FLG in the coating leads to a significant reduction in bacterial growth, with reductions of 3.17 and 9.81 log for Staphylococcus aureus and Escherichia coli, respectively. The same coating also showed high antiviral efficacy, reducing bacteriophage phi6 by 5.53 log. The antiviral efficiency of the coating is find to be doubled compared to either micro copper flakes or few‐layer graphene alone. This novel coating design is versatile and can be applied to various substrates, such as personal protective clothing and face masks, to provide biocidal activity against both bacterial and viral pathogens.

Publisher

Wiley

Subject

Multidisciplinary

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