176
6 Stresses of Anodic Oxide Films Grown on Metal Electrode
since the porous films formed in borax and chromic acid solutions contain no electrolyte species and have a less regular morphology. At present, however, further
work is needed to understand the roles of the incorporated electrolyte anions in the
formation of self-organized pore arrays.
References
1. Cabrera N, Mott NF (1948–1949) Rep Progr Phys 12:163–184
2. Young L (1961) Anodic oxide films. Academic Press, New York, pp 13–37
3. Lohrengel MM (1993) Mater Sci and Eng R 11:243–294
4. Guntherschulze A, Betz H (1937) Die elektrolyt kondensatoren. Verlag M Klain, Berlin
5. Ohtsuka T, Masuda M, Sato N (1985) J Electrochem Soc 132:787–792
6. Khalil N, Leach JSL (1986) Electrochim Acta 31:1279–1285
7. Vijh AK (1973) Electrochemistry of metals and semiconductor: the application of solid state
science to electrochemical phenomena. Marcell Dekker Inc, New York, pp 129–165
8. Pilling NB, Bedworth RE (1923) J Inst Met 29:529–591
9. Dictionary of science and chemistry (Rikagaku-jiten in Japanese) (1987) Iwanami Shoten
Publishers, Tokyo
10. Samsonov GV (1973) The oxide handbook. IFI/Plenum, New York
11. Davies JA, Domeij B, Pringle JPS, Brown F (1965) J Electrochem Soc 112:675–680
12. Amsel G, Samuel D (1962) J Phys Chem Solids 23:1707–1718
13. Pringle JPS (1980) Electrochim Acta 25:1403–1428
14. Cherki C, Siejka J (1973) J Electrochem Soc 120:784–791
15. Siejka J, Ortega C (1977) J Electrochem Soc 124:883–891
16. Brown F, Mackintosh WD (1973) J Electrochem Soc 120:1096–1102
17. Nelson JC, Oriani RA (1993) Corros Sci 34:307–326
18. Capraz ÖÖ, Shrotriya P, Hebert KR (2014) J Electrochem Soc 161:D256–D262
19. Ueno K, Pyun S-I, Seo M (2000) J Electrochem Soc 147:4519–4523
20. Vanhumbeek J-F, Proost J (2008) J Electrochem Soc 155:C506–C514
21. Van Overmeere Q, Vanhumbeek J-F, Proost J (2010) J Electrochem Soc 157:C166–C173
22. Vermilyea DA (1963) J Electrochem Soc 110:345–346
23. Leach JSL, Pearson BR (1988) Corros Sci 28:43–56
24. Van Overmeere Q, Proost J (2010) Electrochim Acta 55:4653–4660
25. Bradhurst DH, Leach JSL (1966) J Electrochem Soc 113:1245–1249
26. Ohtsuka T, Otsuki T (1988) Corros Sci 40:951–958
27. Ohtsuka T, Guo J, Sato N (1986) J Electrochem Soc 133:2473–2476
28. Sahu SN, Scarminio J, Decker F (1990) J Electrochem Soc 137:1150–1154
29. Vanhumbeeck J-F, Proost J (2008) Electrochim Acta 53:6165–6172
30. Proost J, Vanhumbeeck J-F, Van Overmeere Q (2009) Electrochim Acta 55:350–357
31. Dyer CK, Leach JSL (1978) J Electrochem Soc 125:1032–1038
32. Habazaki H, Uozumi M, Konno H, Shimizu K, Skeldon P, Thompson GE (2003) Corros Sci
45:2063–2073
33. Blackwood DJ, Peter LM (1989) Electrochim Acta 34:1505–1511
34. Fromhold-Jr AT (1972) Surf Sci 22:396–410
35. Fromhold-Jr AT (1976) Theory of metal oxidation. vol 1. Fundamentals. North-Holland Pub
Co, Amsterdam, pp 228–230
36. Moon S-M, Pyun S-I (1998) Electrochim Acta 43:3117–3126
37. Butler MA, Ginley DS (1988) J Electrochem Soc 135:45–51
38. Landau LD, Lifshitz EM (1960) Electrodynamics of continuous media: course of theoretical
physics. vol 8. Pergamon, Oxford, pp 31
Précédent

- 182/216

Suivant