[1]
D. Prot and C. Monty: Philos. Mag. A Vol. 73.
Google Scholar
[4]
(1996), p.899.
Google Scholar
[2]
D. Prot, M. Le Gall, B. Lesage, A.M. Huntz and C. Monty: Philos. Mag. A Vol. 73.
Google Scholar
[4]
(1996), p.935.
Google Scholar
[3]
M. Le Gall and B. Lesage: Philos. Mag. A Vol. 70.
Google Scholar
[5]
(1994), p.761.
Google Scholar
[4]
A.E. Paladino and W.D. Kingery: J. Chem. Phys. Vol. 37.
Google Scholar
[5]
(1962), p.957.
Google Scholar
[5]
W.D. Kingery and Y. Oichi: J. Chem. Phys. Vol. 33.
Google Scholar
[2]
(1960), p.480.
Google Scholar
[6]
K.P.R. Reddy and A.R. Cooper: J. Am. Ceram. Soc. Vol. 65.
Google Scholar
[12]
(1982), p.634.
Google Scholar
[7]
F.G. Will, H.G. deLorenzi and K.H. Janora: J. Am. Ceram. Soc. Vol. 75 [2) (1992), p.295.
Google Scholar
[8]
F.G. Will and K.H. Janora: J. Am. Ceram. Soc. Vol. 75.
Google Scholar
[10]
(1992), p.2795.
Google Scholar
[9]
F.A. Kröger: Solid State Ionics Vol. 12 (1984), p.189.
Google Scholar
[10]
M.M. El-Aiat, L.D. Hou, S.K. Tiku, H.A. Wang and F.A. Kroger: J. Am. Ceram. Soc. Vol. 64.
Google Scholar
[3]
(1981), p.174.
Google Scholar
[11]
L.D. Hou, S.K. Tiku, H.A. Wang and F.A. Kröger: J. Mater. Sci. Vol. 14 (1979), p.1877.
Google Scholar
[12]
H.M. Kizilyalli and P.R. Mason: Phys. Stat. Sol. A Vol. 36 (1976), p.499.
Google Scholar
[13]
K. Kitazawa and R.L. Coble: J. Am. Ceram. Soc. Vol. 57.
Google Scholar
[6]
(1974), p.245.
Google Scholar
[14]
K. Kitazawa and R.L. Coble: J. Am. Ceram. Soc. Vol. 57.
Google Scholar
[6]
(1974), p.250.
Google Scholar
[15]
H.P.R. Frederikse and W.R. Hosler: Mater. Sci. Res. Vol. 9 (1974), p.233.
Google Scholar
[16]
Yee, J. and F.A. Kröger, Journal of the American Ceramic Society, 1973. 56(4).
Google Scholar
[17]
R.J. Brook, J. Yee and F.A. Kroger: J. Am. Ceram. Soc. Vol. 25: (1971), p.444.
Google Scholar
[18]
N.M. Tallan and H.C. Graham: J. Am. Ceram. Soc. Vol. 65 (1965), p.512.
Google Scholar
[19]
T. Norby and P. Kofstad: High Temp. - High Press. Vol. 20 (1988), p.345.
Google Scholar
[20]
D.V. Peters, L. Feinstein and C. Peltzer: J. Chem. Phys. Vol. 42.
Google Scholar
[7]
(1965), p.2345.
Google Scholar
[21]
J.R. Macdonald: Impedance Spectroscopy - Emphasizing Solid Materials and Systems. 1987: John Wiley & Sons, Inc.
Google Scholar
[22]
Z. Shen, M. Johnsson, Z. Zhao and M. Nygren: J. Am. Ceram. Soc. Vol. 85.
Google Scholar
[8]
(2002), p. (1921).
Google Scholar
[23]
J. Pan, C. Leygraf and B. Jönsson. Impedance spectroscopy study of transport properties of high-temperature oxide films formed on Kanthal APM. in 15 th International Corrosion Congress. 2002. Granada, Spain.
Google Scholar
[24]
J. Fleig and J. Maier: Electrochim. Acta Vol. 41 [7-8] (1996), p.1003.
Google Scholar
[25]
J. Fleig and J. Maier: J. Electroceram. Vol. 1.
Google Scholar
[1]
(1997), p.73.
Google Scholar
[26]
J. Fleig and J. Maier: Solid State Ionics Vol. 85 [1-4] (1996), p.17.
Google Scholar
[27]
W.W., Ho: Materials research society symposia proceedings Vol. 124 (1988), p.137.
Google Scholar
[28]
O.T. Özkan and M. A. J: J. Phys. D. Applied Physics Vol. 3 (1970), p.983.
Google Scholar
[29]
R.J.D. Tilley: Defect Crystal Chemistry. 1987, London: Blackie and Son Ltd. 53-54.
Google Scholar
[30]
M. Filal, C. Petot, M. Mokchah, C. Chateau and J.L. Carpentier: Solid State Ionics Vol. 80 [1- 2] (1995), p.27.
Google Scholar
[31]
P.S. Manning, J.D. Sirman, R.A. De Souza and J.A. Kilner: Solid State Ionics Vol. 100 [1-2] (1997), p.1.
Google Scholar
[32]
D. Martin and D. Duprez: J. Phys. Chem. Vol. 100.
Google Scholar
[22]
(1996), p.9429.
Google Scholar