4.6 Article

Physicomechanical and Antimicrobial Characteristics of Cement Composites with Selected Nano-Sized Oxides and Binary Oxide Systems

Journal

MATERIALS
Volume 15, Issue 2, Pages -

Publisher

MDPI
DOI: 10.3390/ma15020661

Keywords

oxides; binary oxides; cement mortar; physicomechanical characteristics; antimicrobial properties

Funding

  1. National Science Centre Poland [2019/35/B/ST8/02535]
  2. Ministry of Education and Science Poland [0412/SBAD/0050]

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In recent years, there has been increasing attention to the durability of building materials, especially those based on cementitious binders. This study investigated the use of zinc, titanium, and copper oxides as nanoadditives in cement mortars to enhance their strength and resistance to external factors. The research found that while all nanoadditives initially worsened the mechanical parameters of the mortars, zinc and titanium oxides showed improvement after 28 days. Copper oxide exhibited the best antibacterial activity among the tested oxide systems. The study established the order of microbial susceptibility to inhibition of growth on cement mortars.
In recent years, increasing attention has been paid to the durability of building materials, including those based on cementitious binders. Important aspects of durability include the increase of the strength of the cement matrix and enhancement of material resistance to external factors. The use of nanoadditives may be a way to meet these expectations. In the present study, zinc, titanium and copper oxides, used in single and binary systems (to better the effect of their performance), were applied as additives in cement mortars. In the first part of this work, an extensive physicochemical analysis of oxides was carried out, and in the second, their application ranges in cement mortars were determined. The subsequent analyses were employed in determining the physicochemical properties of pristine oxides: Fourier transform infrared spectroscopy (FTIR), energy dispersive X-ray fluorescence (EDXRF), scanning electron microscopy (SEM), measurement of the particle size distribution, as well as zeta potential measurement depending on the pH values. Influence on selected physicomechanical parameters of the cement matrix and resistance to the action of selected Gram-positive and Gram-negative bacteria and fungi were also examined. Our work indicated that all nanoadditives worsened the mechanical parameters of mortars during the first 3 days of hardening, while after 28 days, an improvement was achieved for zinc and titanium(IV) oxides. Binary systems and copper(II) oxide deteriorated in strength parameters throughout the test period. In contrast, copper(II) oxide showed the best antibacterial activity among all the tested oxide systems. Based on the inhibitory effect of the studied compounds, the following order of microbial susceptibility to inhibition of growth on cement mortars was established (from the most susceptible, to the most resistant): E. coli < S. aureus < C. albicans < B. cereus = P. aeruginosa < P. putida.

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