Invisible Bactericidal Coatings on Generic Surfaces through A Convenient Hand Spray

11 July 2022, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

Robust antimicrobial coatings featuring high transparency, strong bactericidal activity, and easy application procedure on generic surfaces can be widely accepted by the public to prevent pandemics. In this work, we demonstrated the hand sprayer-based approach to deposit complex oxide coatings composed of Co-Mn-Cu-Zn-Ag on screen protectors of smartphones through acidic redox-assisted deposition (ARD). The as-obtained coatings possess high transparency (99.74% transmittance at 550 nm) and long-lasting durability against swiping (for 135 days of average use) or wet cleaning (for 33 days of thrice-a-day routine). The spray coating enabling 3.14% E. coli viability can further be reduced to 0.21% through a consistent elemental composition achieved via the immersion method. The high intake of Cu2+ in the coating is majorly responsible for bactericidal activity, and the presence of Ag+ and Zn2+ is necessary to achieve almost complete eradication. The success of extending the bactericidal coatings on other typical hand-touched surfaces (e.g. stainless steel railings, rubber handrails, and plastic switches) in public areas has been demonstrated.

Keywords

antibacterial coatings
oxide-based
spray deposition
bactericidal activities
transparent surfaces

Supplementary materials

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Description
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Supporting Information File
Description
Experimental Section, X-ray Photoelectron Spectra, Table of mole ratios
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