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Electrochemical stability of cpTi with surfaces modified by acid etching and aluminum oxide sandblasting

Grant number: 13/08451-1
Support Opportunities:Regular Research Grants
Duration: October 01, 2013 - September 30, 2015
Field of knowledge:Health Sciences - Dentistry - Dental Clinics
Principal Investigator:Valentim Adelino Ricardo Barão
Grantee:Valentim Adelino Ricardo Barão
Host Institution: Faculdade de Odontologia de Piracicaba (FOP). Universidade Estadual de Campinas (UNICAMP). Piracicaba , SP, Brazil
Associated researchers: Cortino Sukotjo ; Mathew Thoppil Mathew

Abstract

The aim of this study is to investigate the corrosive behavior of commercially-pure titanium (cpTi) discs as a function of different surface modifications: machined (surface I - control), modified by chloride acid and hydrogen peroxide (surface II), modified by sulfuric acid and hydrogen peroxide (surface III), modified by aluminum oxide sandblasting (surface IV) followed by chloride acid and hydrogen peroxide treatment (surface V) or sulfuric acid and hydrogen peroxide treatment (surface VI). An oral environment with different artificial saliva pHs (3; 6.5 and 9) will be simulated. Additionally, the tests will be conducted in simulated body fluid solution to mimic the blood plasma (pH 7.4). The hypothesis to be tested is that the proposed surface treatments will enhance the corrosion behavior of cpTi when compared with machined surface. Additionally, it is hypothesized that the acidic pH of artificial saliva will reduce the corrosion resistance of cpTi independent of the type of surface modification. In the electrochemical assay (n=5), standard tests such as open circuit potential, electrochemical impedance spectroscopy (EIS), and potentiodynamic tests will be conducted in artificial saliva with different pHs and in simulated body fluid solution. The corrosion current density (Icorr), passivation current density (Ipass), corrosion potential (Ecorr), capacitance (Cdl) and polarization resistance (Rp) of the cpTi oxide layer will be determined. Discs' surfaces will be characterized by scanning electron microscope (SEM), atomic force microscope, and their surface roughness will be investigated. Energy dispersive spectroscopy (EDS) and X-ray diffraction analysis (XRD) will be used to investigate the composition of the oxide layer formed on the cpTi surface. Quantitative data will be statistically analyzed at a significant level of 5%. (AU)

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Scientific publications (10)
(References retrieved automatically from Web of Science and SciELO through information on FAPESP grants and their corresponding numbers as mentioned in the publications by the authors)
VIEIRA MARQUES, ISABELLA DA SILVA; ALFARO, MARIA FERNANDO; DA CRUZ, NILSON CRISTINO; MESQUITA, MARCELO FERRAZ; TAKOUDIS, CHRISTOS; SUKOTJO, CORTINO; MATHEW, MATHEW T.; RICARDO BARAO, VALENTIM ADELINO. Tribocorrosion behavior of biofunctional titanium oxide films produced by micro-arc oxidation: Synergism and mechanisms. JOURNAL OF THE MECHANICAL BEHAVIOR OF BIOMEDICAL MATERIALS, v. 60, p. 8-21, . (13/08451-1)
VIEIRA MARQUES, ISABELLA DA SILVA; DA CRUZ, NILSON CRISTINO; LANDERS, RICHARD; YUAN, JUDY CHIA-CHUN; MESQUITA, MARCELO FERRAZ; SUKOTJO, CORTINO; MATHEW, MATHEW T.; RICARDO BARAO, VALENTIM ADELINO. Incorporation of Ca, P, and Si on bioactive coatings produced by plasma electrolytic oxidation: The role of electrolyte concentration and treatment duration. BIOINTERPHASES, v. 10, n. 4, . (13/08451-1)
BELINE, THAMARA; VIEIRA MARQUES, ISABELLA DA SILVA; MATOS, ADAIAS O.; OGAWA, ERIKA S.; RICOMINI-FILHO, ANTONIO P.; RANGEL, ELIDIANE C.; DA CRUZ, NILSON CRISTINO; SUKOTJO, CORTINO; MATHEW, MATHEW T.; LANDERS, RICHARD; et al. Production of a biofunctional titanium surface using plasma electrolytic oxidation and glow-discharge plasma for biomedical applications. BIOINTERPHASES, v. 11, n. 1, . (13/08451-1)
VIEIRA MARQUES, ISABELLA DA SILVA; RICARDO BARAO, VALENTIM ADELINO; DA CRUZ, NILSON CRISTINO; YUAN, JUDY CHIA-CHUN; MESQUITA, MARCELO FERRAZ; RICOMINI-FILHO, ANTONIO PEDRO; SUKOTJO, CORTINO; MATHEW, MATHEW T.. Electrochemical behavior of bioactive coatings on cp-Ti surface for dental application. Corrosion Science, v. 100, p. 133-146, . (13/08451-1)
CORDEIRO, JAIRO M.; BELINE, THAMARA; RIBEIROC, ANA LUCIA R.; RANGEL, ELIDIANE C.; DA CRUZ, NILSON C.; LANDERS, RICHARD; FAVERANI, LEONARDO P.; VAZ, LUIS GERALDO; FAIS, LAIZA M. G.; VICENTE, FABIO B.; et al. Development of binary and ternary titanium alloys for dental implants. Dental Materials, v. 33, n. 11, p. 1244-1257, . (16/11470-6, 15/25562-7, 13/08451-1, 14/26853-2)
VIEIRA MARQUES, ISABELLA DA SILVA; ALFARO, MARIA FERNANDA; SAITO, MIKI TAKETOMI; DA CRUZ, NILSON CRISTINO; TAKOUDIS, CHRISTOS; LANDERS, RICHARD; MESQUITA, MARCELO FERRAZ; NOCITI JUNIOR, FRANCISCO HUMBERTO; MATHEW, MATHEW T.; SUKOTJO, CORTINO; et al. Biomimetic coatings enhance tribocorrosion behavior and cell responses of commercially pure titanium surfaces. BIOINTERPHASES, v. 11, n. 3, . (13/08451-1)
BELINE, THAMARA; GARCIA, CAMILA S.; OGAWA, ERIKA S.; MARQUES, ISABELLA S. V.; MATOS, ADAIAS O.; SUKOTJO, CORTINO; MATHEW, MATHEW T.; MESQUITA, MARCELO F.; CONSANI, RAFAEL X.; BARAO, VALENTIM A. R.. Surface treatment influences electrochemical stability of cpTi exposed to mouthwashes. Materials Science & Engineering C-Materials for Biological Applications, v. 59, p. 1079-1088, . (13/19766-3, 13/08451-1)
MATOS, ADAIAS O.; RICOMINI-FILHO, ANTONIO P.; BELINE, THAMARA; OGAWA, ERIKA S.; COSTA-OLIVEIRA, BARBARA E.; DE ALMEIDA, AMANDA B.; NOCITI JUNIOR, FRANCISCO H.; RANGEL, ELIDIANE C.; DA CRUZ, NILSON C.; SUKOTJO, CORTINO; et al. Three-species biofilm model onto plasma-treated titanium implant surface. COLLOIDS AND SURFACES B-BIOINTERFACES, v. 152, p. 354-366, . (13/08451-1, 13/26145-5)
OGAWA, ERIKA S.; MATOS, ADAIAS O.; BELINE, THAMARA; MARQUES, ISABELLA S. V.; SUKOTJO, CORTINO; MATHEW, MATHEW T.; RANGEL, ELIDIANE C.; CRUZ, NILSON C.; MESQUITA, MARCELO F.; CONSANI, RAFAEL X.; et al. Surface-treated commercially pure titanium for biomedical applications: Electrochemical, structural, mechanical and chemical characterizations. Materials Science & Engineering C-Materials for Biological Applications, v. 65, p. 251-261, . (13/08451-1, 13/24112-2)
CORDEIRO, JAIRO M.; FAVERANI, LEONARDO P.; GRANDINI, CARLOS R.; RANGEL, ELIDIANE C.; DA CRUZ, NILSON C.; NOCITI JUNIOR, FRANCISCO H.; ALMEIDA, AMANDA B.; VICENTE, FABIO B.; MORAIS, BRUNA R. G.; BARAO, VALENTIM A. R.; et al. Characterization of chemically treated Ti-Zr system alloys for dental implant application. Materials Science & Engineering C-Materials for Biological Applications, v. 92, p. 849-861, . (13/08451-1, 16/11470-6, 15/03159-6, 13/15545-2, 15/25562-7, 14/23575-1)

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