Page 354 - НАЦІОНАЛЬНА АКАДЕМІЯ НАУК УКРАЇНИ
P. 354
354
24. Asoh H., Nishio K., Nakao M. et al. Fabrication of ideally ordered
anodic porous alumina with 63 nm hole periodicity using sulfuric acid. Journal of
Vacuum Science & Technology. 2001. V. 19. № 2. P. 569-572.
25. Manzano C.V., Martín J., Martín-González M.S. Microporous and
Mesoporous Materials. Volume 184. 15 January 2014. P. 177-183.
26. Mínguez-Bacho, I., Rodríguez-López, S., Asenjo A., Vázquez, M.,
HernándezVélez, M. Self-correlation function for determination of geometrical
parameters in nanoporous anodic alumina films. Applied Physics A: Materials Science
and Processing. 2012. P. 105-112.
27. Barkey D., McHugh J., Pattern Formation in Anodic Aluminum Oxide
Growth by Flow Instability and Dynamic Restabilization. ournal of The
Electrochemical Society. 2010. P. 388-391.
28. Wood G. C. and O’Sullivan J. P. The anodizing of aluminium in
sulphate solutions. Electrochimical Acta. vol. 15. N. 12. P. 1865–1876. 1970.
29. Li J., Papadopoulos C., Xu J.M. and Moskovits M. Highly-ordered
carbon nanotube arrays for electronics applications. Applied Physics Letters. 1999. V.
75. P. 367-369.
30. Yin A.J., Li J., Jian W., Bennett A.J. and Xu J.M. Fabrication of highly
ordered metallic nanowire arrays by electrodeposition. Applied Physics Letters. 2001.
V. 79. №7. P. 1039-1041.
31. Yang Y., Chen H., Mei Y., Chen J., Wu X., Bao X. Anodic alumina
template on Au/Si substrate and preparation of CdS nanowires. Solid State
Communications. V. 123. № 6-7. 2002. P. 279-282.
32. Jang W.Y., Kulkarni N.N., Shih C.K., and Yao Z. Electrical
characterization of individual carbon nanotubes grown in nanoporous anodic alumina
templates. Journal of Physics: Materials. 2004. V. 84. № 7. P. 1177-1179.
33. Sheasby, P.G., Pinner, R. and Wernick, S. (2001) The Surface Treatment
and Finishing of Aluminium and Its Alloys. Materials Sciences and Applications,
Vol.15 No.4, April 15, 2024