Page 350 - Докторська дисертація_Ткачук
P. 350
350
237. Cho H.-R., Choe H.-C. Morphology of hydroxyapatite and Sr coatings
deposited using radio frequency-magnetron sputtering method on nanotube
formed Ti-6Al-4V alloy. Thin Solid Films. 2021. Vol. 735. Article
No. 138893.
238. Kong D.-J., Long D., Wu Y.-Z. et al. Mechanical properties of
hydroxyapatite-zirconia coatings prepared by magnetron sputtering.
Transactions of Nonferrous Metals Society of China. 2012. Vol. 22. P. 104–
110.
239. Nieh T.G., Jankowski A.F., Koike J. Processing and characterization of
hydroxyapatite coatings on titanium produced by magnetron sputtering
Journal of Materials Research. 2001. Vol. 16. P. 3238–3245.
240. Stamate E. Lowering the resistivity of aluminum doped zinc oxide thin
films by controlling the self-bias during RF magnetron sputtering. Surface
and Coatings Technology. 2020. Vol. 402. Article No. 126306.
241. Qi J., Xu F., Bao K. et al. Influence of a hard transition layer on the
microstructure and properties of diamond-like carbon/hydroxyapatite
composite coating prepared by magnetron sputtering. Journal of the European
Ceramic Society. 2021. Vol. 41. P. 3731–3742.
242. López E.O., Rossi A.L., Archanjo B.S. et al. Crystalline nano-coatings
of fluorine-substituted hydroxyapatite produced by magnetron sputtering with
high plasma confinement. Surface and Coatings Technology. 2015. Vol. 264.
P. 163–174.
243. Vlček J., Pajdarová A.D., Musil J. Pulsed dc magnetron discharges and
their utilization in plasma surface engineering. Contributions to Plasma
Physics. 2004. Vol. 44. P. 426–436.
244. Pérez Zapata K., Lenis J.A., Rico P. et al. Determination of synergistic
effect between roughness and surface chemistry on cell adhesion of a
multilayer Si - hydroxyapatite coating on Ti6Al4V obtained by magnetron
sputtering. Thin Solid Films. 2022. Vol. 760. Article No. 139489.

