Department of Ceramics and Refractories, Faculty of Materials Science and Ceramics, AGH University of Science and Technology, 30-059 Krakow, Poland.
Department of Hydrogen Energy, Faculty of Energy and Fuels, AGH University of Science and Technology, 30-059 Krakow, Poland.
Int J Mol Sci. 2022 Feb 18;23(4):2283. doi: 10.3390/ijms23042283.
The aim of the work was to obtain hybrid coatings containing silver, copper, and zinc nanoparticles on the TiAlV medical alloy via a sol-gel process. The developed layers were designed to bring about a bactericidal and fungicidal effect, as well as for protection against surgical scratches during the implantation of implants used in veterinary medicine. In this work, the authors focused on evaluating the microstructure (SEM + EDS); the structure (XRD, FTIR); and the surface properties, such as wettability, free surface energy, and roughness of layers with various concentrations of metallic nanoparticles (2 and 5 mol %). Our results confirmed that the sol-gel method enables the easy manufacturing of hybrid layers endowed with different porosity values as well as various shapes and sizes of metallic nanoparticles. A higher concentration of nanoparticles was observed on the surface containing 5 mol % of metallic salts. The highest degree of homogeneity was obtained for the layers containing silver nanoparticles. In addition, the silver nanoparticles were round and had the smallest dimensions, even below 20 nm. The FTIR and XRD structural studies confirmed the presence of an organosilicon matrix containing all three types of the metallic particles. We conclude that the higher concentration of nanoparticles influenced the alloy surface parameters.
本工作旨在通过溶胶-凝胶工艺在 TiAlV 医用合金上获得含有银、铜和锌纳米粒子的混合涂层。开发的涂层旨在实现杀菌和抑菌效果,并在兽医植入物植入过程中防止手术划痕。在这项工作中,作者重点评估了具有不同金属纳米粒子浓度(2 和 5 mol%)的层的微观结构(SEM + EDS);结构(XRD、FTIR);以及表面性质,如润湿性、自由表面能和粗糙度。我们的结果证实,溶胶-凝胶法能够轻松制造具有不同孔隙率值以及不同形状和尺寸的金属纳米粒子的混合层。在含有 5 mol%金属盐的表面上观察到更高浓度的纳米粒子。含有银纳米粒子的层具有最高的均匀度。此外,银纳米粒子呈圆形且尺寸最小,甚至低于 20nm。FTIR 和 XRD 结构研究证实了含有所有三种金属颗粒的有机硅基质的存在。我们得出结论,较高浓度的纳米粒子影响了合金表面参数。