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Authors: Shypylenko A., Pshyk A.V., Grześkowiak B., Medjanik K., Peplińska B., Oyoshi K., Pogrebnjak A., Jurga S., Coy E. |
Title: Effect of ion implantation on the physical and mechanical properties of Ti-Si-N multifunctional coatings for biomedical applications |
Source: Materials & Design |
Year : 2016 |
Abstract:
In the present work, multifunctional Ti-Si-N coatings have been deposited using CAVD method with the aim of studying their chemical, physical, structural and mechanical properties. Coatings of Ti-Si-N were modified by high-intensity ion implantation using copper ions with dose D = 2 x 10(17) ions/cm(2) and energy E = 60 keV. The results demonstrated that ion implantation has an effect on the grain size, hardness, and Young modulus of the Ti-Si-N coating. Additionally, the effect of Cu implantation on the bioactive properties of coatings was investigated by contact antimicrobial essay. The results show a high release of Cu ions in the cultivation liquid and the low efficiency of the <20% Cu doping towards E. coli bacteria. Our results bring understanding to the low dosage ion implantation of multifunctional surfaces towards applications and general drawbacks of ion implantation as bioactive tailoring method.
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DOI: 10.1016/j.matdes.2016.08.050 (Pobrane: 2018-04-03)
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