dc.creatorFaverani L.P.
dc.creatorBarao V.A.R.
dc.creatorPires M.F.A.
dc.creatorYuan J.C.-C.
dc.creatorSukotjo C.
dc.creatorMathew M.T.
dc.creatorAssuncao W.G.
dc.date2014
dc.date2015-06-25T17:50:00Z
dc.date2015-11-26T15:28:11Z
dc.date2015-06-25T17:50:00Z
dc.date2015-11-26T15:28:11Z
dc.date.accessioned2018-03-28T22:36:53Z
dc.date.available2018-03-28T22:36:53Z
dc.identifier
dc.identifierMaterials Science And Engineering C. Elsevier Ltd, v. 43, n. , p. 1 - 10, 2014.
dc.identifier9284931
dc.identifier10.1016/j.msec.2014.06.033
dc.identifierhttp://www.scopus.com/inward/record.url?eid=2-s2.0-84904542999&partnerID=40&md5=c931c4db944e59368a72cf0eb682552a
dc.identifierhttp://www.repositorio.unicamp.br/handle/REPOSIP/85752
dc.identifierhttp://repositorio.unicamp.br/jspui/handle/REPOSIP/85752
dc.identifier2-s2.0-84904542999
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/1261531
dc.descriptionThis study evaluated the corrosion kinetics and surface topography of Ti-6Al-4V alloy exposed to mouthwash solutions (0.12% chlorhexidine digluconate, 0.053% cetylpyridinium chloride and 3% hydrogen peroxide) compared to artificial saliva (pH 6.5) (control). Twenty Ti-6Al-4V alloy disks were used and divided into 4 groups (n = 5). For the electrochemical assay, standard tests as open circuit potential and electrochemical impedance spectroscopy (EIS) were applied at baseline, 7 and 14 days after immersion in the solutions. Scanning electron microscopy, atomic force microscopy and profilometry (average roughness - Ra) were used for surface characterization. Total weight loss of disks was calculated. Data were analyzed by ANOVA and Bonferroni's test (α = 0.05). Hydrogen peroxide generated the lowest polarization resistance (R p) values for all periods (P < 0.05). For the capacitance (C dl), similar results were observed among groups at baseline (P = 0.098). For the 7 and 14-day periods, hydrogen peroxide promoted the highest Cdl values (P < 0.0001). Hydrogen peroxide promoted expressive superficial changes and greater Ra values than the others (P < 0.0001). It could be concluded that solutions containing cetylpyridinium chloride and chlorhexidine digluconate might be the mouthwashes of choice during the post-operatory period of dental implants. However, hydrogen peroxide is counter-indicated in these situations. Further studies evaluating the dynamics of these solutions (tribocorrosion) and immersing the disks in daily cycles (two or three times a day) to mimic a clinical situation closest to the application of mouthwashes in the oral cavity are warranted to prove our results. © 2014 Elsevier B.V.
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dc.languageen
dc.publisherElsevier Ltd
dc.relationMaterials Science and Engineering C
dc.rightsfechado
dc.sourceScopus
dc.titleCorrosion Kinetics And Topography Analysis Of Ti-6al-4v Alloy Subjected To Different Mouthwash Solutions
dc.typeArtículos de revistas


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