4.7 Article Proceedings Paper

Influence of Ag concentration on microstructure, mechanical properties and cytocompatibility of nanoscale Ti-Ag-N/Ag multilayers

Journal

SURFACE & COATINGS TECHNOLOGY
Volume 312, Issue -, Pages 128-133

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.surfcoat.2017.01.104

Keywords

Ti-Ag-N/Ag multilayers; Magnetron sputtering; Ag concentration; Hardness; Cytocompatibility

Funding

  1. High Technology Research and Development Program of China (863 Program) [2015AA034702]
  2. National Natural Science Foundation of China [51472180]
  3. Tianjin Natural Science Foundation of China [15JCQNJC42500]

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Nanoscale Ti-Ag-N/Ag multilayers were successfully deposited on the medical titanium alloy (Ti-Al-4V) substrates using a multi-target magnetron co-sputtering system. The microstructure, mechanical properties and cytocompatibility were investigated. X-ray diffraction indicated that Ti-Ag-N/Ag multilayers exhibited Ag (111) and (220) textures at a thicker l(Ag) (Ag layer thickness) of 6 nm. The intensity of TiN (111) peak became gradually weak with l(Ag) varying from 12 to 6 nm. A thinner l(Ag) of 1.2 nm can block the growth of Ag grains and particles and stimulate the development of TiN (111) orientation, which led Ti-Ag-N/Ag multilayer to a highest hardness (205 GPa), elastic modulus (260.7 GPa) and fracture critical load (27.4 mN). X-ray photoelectron spectrometer proved the presence of Ag, TiN, and TiO2 on the surface of Ti-Ag-N/Ag multilayers. Owing to Ag diffusion from Ag layer to TiN layer, Ag was embedded in the surrounding of TiO2 and TiN in Ti-Ag-N layer, which stimulated the photocatalytic activity of TiO2, and then resulted in an improvement in the cytocompatibility of Ti-Ag-N/Ag multilayers with the increased Ag concentration. This work proved that an appropriate Ag concentration can lead to a positive effect on hardness and fracture resistance and also induce negligible adverse effect on the cells growth.(C) 2017 Elsevier B.V. All rights reserved.

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