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1609
46. Vermilyea DA (1957) J Electrochem Soc 104:485–488
47. Alshina LA, Malinenko VP, Phouphanov AD, Jakoleva NM (1986) J Non-Cryst Solids 87:485488
48. Shimizu K, Thompson GE, Wood GC, Kobayashi K (1991) Phil Mag B 63:891–899
49. Bolshakov A, Pharr GM (1998) J Mater Res 13:1049–1058
50. Sato N (1990) Corros Sci 31:1–19
51. Stimming U, Schultze JW (1979) Electrochim Acta 24:859–869
52. Chiba M, Seo M (2002) Corros Sci 44:2379–2391
53. Seo M, Chiba M, Suzuki K (1999) J Electroanal Chem 473:49–53
54. Sato N, Kudo K, Noda T (1971) Electrochim Acta 16:1909–1921
55. Toney MF, Davenport AJ, Oblonsky LJ, Ryan MP, Vitus CM (1997) Phys Rev Lett 24:4282–
4285
56. Davenport AJ, Oblonsky LJ, Ryan MP, Toney MF (2000) J Electrochem Soc 147:2162–2173
57. Fontana MG, Green ND (1967) Corrosion engineering. MacGraw-Hill, New York, p 217
58. Uhlig HH, Revie RW (1985) Corrosion and corrosion control: an introduction to corrosion
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Press, New York, pp 29–32
62. Cheng Y-T, Cheng C-M (1998a) J Appl Phys 84:1284–1291
63. Cheng Y-T, Cheng C-M (1998b) Appl Phys Lett 73:614–616
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65. Cheng Y-T, Cheng C-M (2004) Mater Sci Eng R44:91–149
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211
45. Habazaki H, Shimizu K, Skeldon P, Thompson GE, Wood GC (1997) Proc R Soc A 453:1593–
1609
46. Vermilyea DA (1957) J Electrochem Soc 104:485–488
47. Alshina LA, Malinenko VP, Phouphanov AD, Jakoleva NM (1986) J Non-Cryst Solids 87:485488
48. Shimizu K, Thompson GE, Wood GC, Kobayashi K (1991) Phil Mag B 63:891–899
49. Bolshakov A, Pharr GM (1998) J Mater Res 13:1049–1058
50. Sato N (1990) Corros Sci 31:1–19
51. Stimming U, Schultze JW (1979) Electrochim Acta 24:859–869
52. Chiba M, Seo M (2002) Corros Sci 44:2379–2391
53. Seo M, Chiba M, Suzuki K (1999) J Electroanal Chem 473:49–53
54. Sato N, Kudo K, Noda T (1971) Electrochim Acta 16:1909–1921
55. Toney MF, Davenport AJ, Oblonsky LJ, Ryan MP, Vitus CM (1997) Phys Rev Lett 24:4282–
4285
56. Davenport AJ, Oblonsky LJ, Ryan MP, Toney MF (2000) J Electrochem Soc 147:2162–2173
57. Fontana MG, Green ND (1967) Corrosion engineering. MacGraw-Hill, New York, p 217
58. Uhlig HH, Revie RW (1985) Corrosion and corrosion control: an introduction to corrosion
science and engineering. 3rd edn. John Wiley & Sons, New York, pp 263–271
59. Lumsden JB, Szklarska-Smialowska Z (1978) Corrosion 34:169–176
60. Seo M, Sato N (1989) Inhibition in the context of passivation: paper-138:1–18. Corrosion-89.
NACE, Houston
61. Strehblow H-H, Marcus P (2006) X-ray photoelectron spectroscopy in corrosion research. In:
Marcus P, Mansfeld F (eds) Analytical methods in corrosion science and engineering. CRC
Press, New York, pp 29–32
62. Cheng Y-T, Cheng C-M (1998a) J Appl Phys 84:1284–1291
63. Cheng Y-T, Cheng C-M (1998b) Appl Phys Lett 73:614–616
64. Cheng Y-T, Cheng C-M (1999) Int J Solids Structures 36:1231–1243
65. Cheng Y-T, Cheng C-M (2004) Mater Sci Eng R44:91–149
66. Zhao J, Frankel GS, McCreery RL (1998) J Electrochem Soc 145:2258–2264
67. Kelly RG, Scully JR, Shoesmith DW, Buchheit RG (2003) Electrochemical techniques in
corrosion science and engineering. Marcel Dekker, New York, pp 285–288
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