Sparking Nano-Metals on a Surface of Polyethylene Terephthalate and Its Application: Anti-Coronavirus and Anti-Fogging Properties

Author:

Jantanasakulwong Kittisak,Thanakkasaranee Sarinthip,Seesuriyachan Phisit,Singjai Pisith,Saenjaiban Aphisit,Photphroet Siriphan,Pratinthong Kanticha,Phimolsiripol YuthanaORCID,Leksawasdi NoppolORCID,Chaiyaso Thanongsak,Sommano Sarana RoseORCID,Jantrawut PensakORCID,Chomdej Siriwadee,Chotinan Suwit,Barba Francisco J.ORCID,Regenstein Joe M.,Reungsang AlissaraORCID,Rachtanapun PornchaiORCID

Abstract

The nano-metal-treated PET films with anti-virus and anti-fogging ability were developed using sparking nano-metal particles of Ag, Zn, and Ti wires on polyethylene terephthalate (PET) films. Ag nanoparticles were detected on the PET surface, while a continuous aggregate morphology was observed with Zn and Ti sparking. The color of the Ag-PET films changed to brown with increasing repeat sparking times, but not with the Zn-PET and Ti-PET films. The water contact angle of the nano-metal-treated PET films decreased with increasing repeat sparking times. The RT-PCR anti-virus test confirmed the high anti-virus efficiency of the nano-metal-treated PET films due to the fine particle distribution, high polarity, and binding of the nano-metal ions to the coronavirus, which was destroyed by heat after UV irradiation. A highly transparent, anti-fogging, and anti-virus face shield was prepared using the Zn-PET film. Sparking was an effective technique to prepare the alternative anti-virus and anti-fogging films for medical biomaterial applications because of their low cost, convenience, and fast processing.

Funder

Chiang Mai University

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

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