Page 352 - Докторська дисертація_Ткачук
P. 352
352
253. Meininger M., Schmitz T., Wagner T. et al. Real-time measurement of
protein adsorption on electrophoretically deposited hydroxyapatite coatings
and magnetron sputtered metallic films using the surface acoustic wave
technique. Materials Science and Engineering: C. 2016. Vol. 61. P. 351–354.
254. Shiraishi N., Suzuki Y., Sato N. et al. Calcium phosphate-coated
titanium alloy implants prepared by radiofrequency magnetron sputtering: a
review. Interface Oral Health Science / ed. by K. Sasaki, O.Suzuki,
N.Takahashi. Tokyo, 2012. P. 352–354.
255. Jiang B. L., Wang Y. M. Plasma electrolytic oxidation treatment of
aluminium and titanium alloys. Surface Engineering of Light Alloys.
Aluminium, Magnesium and Titanium Alloys Woodhead Publishing Series in
Metals and Surface Engineering. 2010. P. 110–154.
256. Li H.X., Rudnev V.S., Zheng X.H. et al. Characterization of Al2O3
ceramic coatings on 6063 aluminum alloy prepared in borate electrolytes by
micro–arc oxidation. Journal of Alloys and Compounds. 2008. Vol. 462.
P. 99–102.
257. Rao K.P., Ram G.D.J., Stucker B.E. Improvement in corrosion
resistance of friction stir welded aluminum alloys with micro arc oxidation
coatings. Scripta Materialia. 2008. Vol. 58. P. 998–1001.
258. Yerokhin A.L., Nie X., Leyland A. et al. Characterisation of oxide films
produced by plasma electrolytic oxidation of Ti–6Al–4V alloy. Surface and
Coatings Technology. 2000. Vol. 130. P. 195–206.
259. Mayor B., Arias J., Chiussi S. et al. Calcium phosphate coatings grown
at different substrate temperatures by pulsed ArF–laser deposition. Thin Solid
Films. 1998. Vol. 317. P. 363–366.
260. Wang Y., Wang L., Zheng H. et al. Effect of frequency on the structure
and cell response of Ca– and P–containing MAO films. Applied Surface
Science. 2010. Vol. 256. P. 2018–2024.
261. Wei D., Zhou Y., Jia D. et al. Effect of heat treatment on the structure
and in vitro bioactivity of microarc–oxidized (MAO) titania coatings

