I. Gurrappa, An oxidation model for predicting the life of titanium alloy components in gas turbine engines, J. Alloys Compd, vol.389, issue.1-2, pp.190-197, 2005.

Y. Wouters, A. Galerie, and J. Petit, Thermal oxidation of titanium by water vapour, Solid State Ion, vol.104, issue.1, pp.89-96, 1997.

P. Kofstad, P. B. Anderson, and O. J. Krudtaa, Oxidation of titanium in the temperature range 800-1200°C, J. Common Met, vol.3, issue.2, pp.89-97, 1961.

P. Kofstad, K. Hauffe, and H. Kjollesdal, Investigation on the oxidation mechanism of titanium, Acta Chem. Scand, vol.12, issue.2, pp.239-266, 1958.

C. J. Rosa, Oxygen diffusion in alpha and beta titanium in the temperature range of 932° to 1142°C, Metall. Trans, vol.1, issue.9, pp.2517-2522, 1970.

H. L. Du, P. K. Datta, D. B. Lewis, and J. S. Burnell-gray, Air oxidation behaviour of Ti6Al4V alloy between 650 and 850°, Corros. Sci, vol.36, issue.4, pp.631-642, 1994.

F. Motte, C. Coddet, P. Sarrazin, M. Azzopardi, and J. Besson, A comparative study of the oxidation with water vapor of pure titanium and of Ti-6Al-4V, Oxid. Met, vol.10, issue.2, pp.113-126, 1976.

A. M. Chaze and C. Coddet, Influence of aluminium on the oxidation of titanium between 550 and 750 °C, J. Common Met, vol.157, issue.1, pp.55-70, 1990.

A. M. Chaze and C. Coddet, Influence of chromium on the oxidation of titanium between 550° and 700°C, Oxid. Met, vol.21, issue.3, pp.205-231, 1984.

P. Sarrazin, F. Motte, J. Besson, and C. Coddet, Mechanism of oxidation of titanium and alloy ti-6al-4v by water-vapor, J. -Common Met, vol.59, issue.2, pp.111-117, 1978.

H. Guleryuz and H. Cimenoglu, Oxidation of Ti-6Al-4V alloy, J. Alloys Compd, vol.472, issue.1, pp.241-246, 2009.

J. Kaneda, General corrosion properties of titanium based alloys for the fuel claddings in the supercritical water-cooled reactor, Proceedings of the 12th International Conference on Environmental Degradation of Materials in Nuclear Power System-Water Reactors, The Minerals, Metals & Materials Society, pp.1409-1418, 2005.

J. Lu, Z. Mao, J. Zhang, C. Ma, X. Mao et al., Corrosion of titanium in supercritical water oxidation environments, Trans. Nonferrous Met. Soc. China, vol.12, pp.1054-1057, 2002.

X. Tang, Corrosion behavior of nickel base alloys, stainless steel and titanium alloy in supercritical water containing chloride, phosphate and oxygen, Chem. Eng. Res. Des, vol.100, pp.530-541, 2015.

S. Y. Park, Hydrogen pick-up and corrosion behavior of Ti-alloy (PT-7M) in ammonia water chemistry, pp.915-916, 2004.

B. S. Choi, Design Features of SMART Water Chemistry, pp.39-45, 2004.

I. V. Gorynin, Titanium alloys for marine application, Mater. Sci. Eng. A, vol.263, issue.2, pp.112-116, 1999.

E. F. Rauch and M. Véron, Automated crystal orientation and phase mapping in TEM, Mater. Charact, vol.98, pp.1-9, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01121290

, Highlights in mineralogical crystallography, 2016.

L. P. Jeurgens, W. G. Sloof, F. D. Tichelaar, C. G. Borsboom, and E. J. Mittemeijer, Determination of thickness and composition of aluminium-oxide overlayers on aluminium substrates, Appl. Surf. Sci, pp.11-15, 1999.

W. W. Gärtner, Depletion-Layer Photoeffects in Semiconductors, Phys Rev, vol.116, issue.1, pp.84-87, 1959.

M. A. Butler, Photoelectrolysis and physical properties of the semiconducting electrode WO2, J. Appl. Phys, vol.48, issue.5, pp.1914-1920, 1977.

K. G. Knauss, M. J. Dibley, W. L. Bourcier, and H. F. Shaw, Ti (IV) hydrolysis constants derived from rutile solubility measurements made from 100 to 300 C', Appl. Geochem, vol.16, issue.9, pp.1115-1128, 2001.

W. G. Cook and R. P. Olive, Pourbaix diagrams for chromium, aluminum and titanium extended to high-subcritical and low-supercritical conditions, Corros. Sci, vol.58, pp.291-298, 2012.

M. Kahlweit, Ostwald ripening of precipitates, Adv. Colloid Interface Sci, vol.5, issue.1, pp.1-35, 1975.

O. Kubaschewski, C. B. Alcock, and M. Thermochemistry, , 1979.

P. Bénézeth, D. A. Palmer, and D. J. Wesolowski, Aqueous high-temperature solubility studies. II. The solubility of boehmite at 0.03 m ionic strength as a function of temperature and pH as determined by in situ measurements, Geochim. Cosmochim. Acta, vol.65, issue.13, pp.2097-2111, 2001.

Y. Wouters, Oxydation thermique des metaux dans la vapeur d'eau. Cas du nickel et du titane, 1996.

F. C. Gennari and D. M. Pasquevich, Kinetics of the anatase-rutile transformation in TiO2 in the presence of Fe2O3, J. Mater. Sci, vol.33, issue.6, pp.1571-1578, 1998.

R. D. Shannon, Phase Transformation Studies in TiO2 Supporting Different Defect Mechanisms in Vacuum-Reduced and Hydrogen-Reduced Rutile, J. Appl. Phys, vol.35, issue.11, pp.3414-3416, 1964.

N. Khatun, Anatase to rutile phase transition promoted by vanadium substitution in TiO 2 : A structural, vibrational and optoelectronic study, Ceram. Int, vol.43, issue.16, pp.14128-14134, 2017.

G. C. Vásquez, Influence of Fe and Al doping on the stabilization of the anatase phase in TiO 2 nanoparticles, J Mater Chem C, vol.2, issue.48, pp.10377-10385, 2014.

D. David, E. Garcia, and G. Beranger, Measurement of diffusion-coefficient of oxygen in alpha titanium between 460-degrees and 750-degrees-c by use of the nuclear-reaction o-16(d,p)o-17x, Comptes Rendus Acad. Sci. Ser. Ii, vol.294, issue.16, pp.945-948, 1982.

J. W. Rogers, K. L. Erickson, D. N. Belton, R. W. Springer, T. N. Taylor et al., Low temperature diffusion of oxygen in titanium and titanium oxide films, Appl. Surf. Sci, vol.35, issue.1, pp.137-152, 1988.

Y. Mizuno, Temperature dependence of oxide decomposition on titanium surfaces in ultrahigh vacuum, J. Vac. Sci. Technol. Vac. Surf. Films, vol.20, issue.5, p.1716, 2002.

T. Smith, Oxidation of titanium between 25 degrees c and 400 degrees c, Surf. Sci, vol.38, issue.2, pp.292-312, 1973.

G. Lu, S. L. Bernasek, and J. Schwartz, Oxidation of a polycrystalline titanium surface by oxygen and water, Surf. Sci, vol.458, issue.1, pp.80-90, 2000.

M. Song, S. Han, D. Min, G. Choi, and J. Park, Diffusion of oxygen in ?-titanium, Scr. Mater, vol.59, issue.6, pp.623-626, 2008.

R. P. Elliott, Diffusion in Titanium and Titanium Alloys', DTIC Document, 1962.

Y. Wouters, A. Galerie, and J. Petit, Photoelectrochemical Study of Oxides Thermally Grown on Titanium in Oxygen or Water Vapor Atmospheres, J. Electrochem. Soc, vol.154, issue.10, p.587, 2007.
URL : https://hal.archives-ouvertes.fr/hal-00141125

Y. Choi, Thin Titanium Dioxide Film Electrodes Prepared by Thermal Oxidation, J. Electrochem. Soc, vol.139, issue.7, p.1803, 1992.