Ferreira Armando, Fernandes Margarida M, Souza Arthur L R, Correa Marcio A, Lanceros-Mendez Senentxu, Vaz Filipe
Center of Physics, University of Minho, 4710-057 Braga, Portugal.
Center of Biological Engineering, University of Minho, Campus de Gualtar, Braga 4710-057, Portugal.
ACS Appl Bio Mater. 2022 Mar 21;5(3):1267-1272. doi: 10.1021/acsabm.1c01273. Epub 2022 Feb 16.
The eradication of microorganisms from high traffic surfaces to prevent either viral or bacterial infections represents an urgent need, mainly in the scope of the present pandemic scenario. In this context, this work explores the dual functionality of titanium-copper thin films as pressure elements with antimicrobial properties, aiming for the implementation of touch and sensing capabilities in high traffic surfaces. Copper was employed as the antibacterial agent within a titanium matrix. The film's geometry and deposition parameters were varied in order to optimize antimicrobial and piezoresistive response. A considerable antimicrobial response has been obtained, increasing the copper amount (from 23 to 63 at. %) in the titanium matrix, leading to an outstanding 8 log CFU bacterial reduction in the case of . Moreover, for the same amount of copper, the piezoresistive sensibility of the thin films increases up to a maximum gauge factor of 5.18 ± 0.09, which indicates an adequate electromechanical behavior for sensing applications. Our findings demonstrate the best combined antimicrobial and piezoresistive characteristics for the films with a Cu content of 63 at. %, indicating a potential use of these films for electromechanical sensor applications.
从高流量表面清除微生物以预防病毒或细菌感染是一项迫切需求,在当前大流行的背景下尤为如此。在此背景下,这项工作探索了具有抗菌特性的钛铜薄膜作为压力元件的双重功能,旨在在高流量表面实现触摸和传感功能。铜被用作钛基体中的抗菌剂。改变薄膜的几何形状和沉积参数以优化抗菌和压阻响应。通过增加钛基体中的铜含量(从23原子%增加到63原子%),获得了显著的抗菌响应,在[具体情况]下导致细菌减少高达8个对数CFU。此外,对于相同量的铜,薄膜的压阻灵敏度增加到最大应变系数5.18±0.09,这表明其具有适用于传感应用的机电性能。我们的研究结果表明,铜含量为63原子%的薄膜具有最佳的抗菌和压阻综合特性,表明这些薄膜在机电传感器应用方面具有潜在用途。