Detalhes do Documento

Ag+ release inhibition from ZrCN–Ag coatings by surface agglomeration mechanism...

Autor(es): Calderon Velasquez, S. cv logo 1 ; Escobar Galindo, R. cv logo 2 ; Benito, N. cv logo 3 ; Palacio, C. cv logo 4 ; Cavaleiro, A. cv logo 5 ; Carvalho, S. cv logo 6

Data: 2013

Identificador Persistente: http://hdl.handle.net/1822/27754

Origem: RepositóriUM - Universidade do Minho


Descrição
Published 17 July 2013 New multifunctional materials based on well-established materials to which functional properties are added, such as antibacterial performance, have become a relevant research topic, in order to meet the requirements of today's technological advances. This paper reports the results of a detailed structural and chemical characterization study of ZrCN–Ag coatings produced by reactive magnetron sputtering, as well as the release of silver after immersion in a simulated body fluid (Hank's balanced salt solution), which mimic the material behaviour within the human body. The chemical composition was evaluated by electron probe microanalysis, x-ray photoelectron spectroscopy and Rutherford backscattering spectroscopy, whereas the structure was assessed by Raman spectroscopy and x-ray diffraction. The material exhibits a homogeneous distribution of the elements throughout the films, with a (C + N)/Zr ratio of around 1.3 and 15 at% of silver. A mixture of amorphous (a-C and CNx) and crystalline phases (ZrCN) was identified. In addition, the silver was detected to be released in less than 0.7% of the total silver in the films, occurring during the first two hours of immersion; no further release was evidenced after this period of time.
Tipo de Documento Artigo
Idioma Inglês
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Fundação para a Ciência e a Tecnologia Universidade do Minho   Governo Português Ministério da Educação e Ciência Programa Operacional da Sociedade do Conhecimento União Europeia