Mechanical and Tribological Properties of Ag/TiBx Nanocomposite Thin Films with Strong Antibacterial Effect Prepared by Magnetron Co-Sputtering

Author:

Vidiš Marek1ORCID,Truchlý Martin1ORCID,Izai Vitalii1ORCID,Fiantok Tomáš1,Rajninec Miroslav2ORCID,Roch Tomáš3ORCID,Satrapinskyy Leonid3ORCID,Haršáni Marián4,Nagy Štefan5,Turiničová Veronika3,Mikula Marián35ORCID

Affiliation:

1. Detached Workplace of Faculty of Mathematics, Physics and Informatics, Comenius University Bratislava, 038 53 Turany, Slovakia

2. Plant Science and Biodiversity Center, Institute of Plant Genetics and Biotechnology, Slovak Academy of Sciences, 950 07 Nitra, Slovakia

3. Department of Experimental Physics, Faculty of Mathematics, Physics and Informatics, Comenius University Bratislava, 842 48 Bratislava, Slovakia

4. STATON, s.r.o., 038 53 Turany, Slovakia

5. Institute of Materials and Machine Mechanics SAS, 845 11 Bratislava, Slovakia

Abstract

The use of silver-based antimicrobial materials has been growing recently. Considering the threat of developing silver-resistant bacteria, it is essential to address the endurance of such materials and the amount of silver released into the environment. Here we report on a durable, antibacterial Ag/TiBx nanocomposite coating prepared by conventional magnetron sputtering. The coating consists of fine Ag clusters embedded in extremely hard, wear-resistant overstoichiometric TiBx, which serves as a protective matrix. The highest E. coli growth inhibition of 97% is observed for the coating containing 24 at.% of Ag. A strong antibacterial effect is also maintained after 45 days of immersion in the Luria–Bertani + 5% HNO3 solution. Despite a marked hardness decrease from 40 GPa for TiBx to 6.4 GPa for Ag/TiBx with 28 at.% of Ag, the coating maintains a good specific wear rate of 6 × 10−5 mm3/Nm. Moreover, the addition of Ag, which acts as a solid lubricant, decreases the coefficient of friction from 0.77 to 0.35, even at room temperature. Thanks to the combination of antibacterial properties and enhanced wear resistance, such material can find application as a protective coating for cutlery, door handles, water taps, and other daily-used objects in public areas.

Funder

Operational Program Integrated Infrastructure

Publisher

MDPI AG

Subject

Materials Chemistry,Surfaces, Coatings and Films,Surfaces and Interfaces

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