358
H. Karakurkchi et al.
11. Karakurkchi A, Sakhnenko M, Ved M, Galak A, Petrukhin S (2017) Application of oxidemetallic catalysts on valve metals for ecological catalysis. East Eur J Enterp Technol
5/10(89):12–18
12. Lukiyanchuk IV, Rudnev VS, Tyrina LM (2016) Plasma electrolytic oxide layers as promising
systems for catalysis. Surf Coat Technol 307(Part C): 1183–1193
13. Md Jani AM, Losic D, Voelcker NH (2013) Nanoporous anodic aluminium oxide: Advances
in surface engineering and emerging applications. Prog Mater Sci 58(5):636–704
14. Sakhnenko ND, Ved’ MV, Androshchuk DS, Korniy SA. (2016) Formation of coatings of mixed
aluminum and manganese oxides on the AL25 alloy. Surf Eng Appl Electrochem 52(2):145–151
15. Karakurkchi AV, Sakhnenko ND, Ved MV, Luhovskyi IS, Drobakha HA, Mayba MV (2019)
Features of plasma electrolytic formation of manganese- and cobalt-containing composites on
aluminum alloys. Adv Mater Sci Eng 19(Article ID 6381291)
16. Labardi M, Allegrini M, Salerno M, Fredriani C, Ascoli C (1994) Dynamical friction coefficient
map using a scanning force and friction force microscope. Appl Phys 59
17. Arbizzani C, Borghini M, Mastragostino M, Meneghello L, Zanelli A (1994) Impedance
spectroscopy in electrode/electrolyte interface investigations. Solid State Ionics 72(2):115–121
18. Ved’ MV, Sakhnenko ND, Karakurkchi AV, Myrna TYu (2017) Functional mixed cobalt and
aluminum oxide coatings for environmental safety. Funct Mater 24(2):303–310
19. Glazoff MV, Zolotorevsky VS, Belov NA (2007) Casting aluminum alloys. Elsiever, Oxford,
p 544
20. Davis JR (1993) ASM specialty handbook: aluminum and aluminum alloys. ASM International,
Cleveland, OH
21. Dong H. (2010) Surface engineering of light alloys: aluminium, magnesium and titanium alloys.
Elsevier, p 680
22. Egorkin VS, Vyaliy IE, Sinebryukhov SL, Gnedenkov SV (2017) Composition, morphology
and tribological properties of PEO-coatings formed on an aluminum alloy D16 at different
duty cycles of the polarizing signal. Non-ferrous Met 42(1):12–16
23. Sakhnenko ND, Ved MV, Karakurkchi AV (2017) Nanoscale oxide PEO coatings forming
from diphosphate electrolytes. In: Fesenko O, Yatsenko L (eds) Nanophysics, nanomaterials,
interface studies, and applications. In: NANO 2016, Proceedings in physics, vol 195. Springer,
pp 159–184
24. Boguta DL, Rudnev VS, Yarovaya TP, Kaidalova TA, Gordienko PS (2002) On composition of anodic-spark coatings formed on aluminum alloys in electrolytes with polyphosphate
complexes of metals. Russ J Appl Chem 75(10):1605–1608
25. Ayday A, Durman M (2015) Growth characteristics of plasma electrolytic oxidation coatings
on aluminum alloys. Acta Physic Polon A 127(4):886–887
26. Ponomarev IS, Krivonosova EA, Gorchakov AI (2015) Investigation of discharge dynamics in
microarc oxidation of D16 aluminium alloy. Weld Intern 30(3):244–246
27. Rudnev VS, Vasilyeva MS, Kondrikov NB, Tyrina LM (2005) Plasma-electrolytic formation,
composition and catalytic activity of manganese oxide containing structures on titanium. Appl
Surf Sci 252(5):1211–1220
28. Sakhnenko ND, Ved MV, Karakurkchi AV (2019) Nanostructured mixed oxide coatings on
silumin incorporated by cobalt. Nanophys Nanomater Interface Studies Appl 221:269–291
29. Dudareva NYu, Abramova MM (2016) The structure of plasma-electrolytic coating formed on
Al–Si alloys by the micro-arc oxidation method. Prot Met Phys Chem Surf 52(1):128–132
30. Vasilyeva MS, Rudnev VS (2014) Composition, surface structure and catalytic properties of
manganese- and cobalt-containing oxide layers on titanium. Adv Mater Res 875–877:351–355
31. Yar-Mukhamedova GSh, Ved MV, Karakurkchi AV, Sakhnenko ND (2017) Mixed alumina and
cobalt containing plasma electrolytic oxide coatings. IOP Conf Ser Mater Sci Eng 213
32. Bykanova VV, Sakhnenko ND, Ved MV (2015) Synthesis and photocatalytic activity of coatings
based on the TixZnyOz system. Surf Eng Appl Elechtrochem 51(3):276–282
H. Karakurkchi et al.
11. Karakurkchi A, Sakhnenko M, Ved M, Galak A, Petrukhin S (2017) Application of oxidemetallic catalysts on valve metals for ecological catalysis. East Eur J Enterp Technol
5/10(89):12–18
12. Lukiyanchuk IV, Rudnev VS, Tyrina LM (2016) Plasma electrolytic oxide layers as promising
systems for catalysis. Surf Coat Technol 307(Part C): 1183–1193
13. Md Jani AM, Losic D, Voelcker NH (2013) Nanoporous anodic aluminium oxide: Advances
in surface engineering and emerging applications. Prog Mater Sci 58(5):636–704
14. Sakhnenko ND, Ved’ MV, Androshchuk DS, Korniy SA. (2016) Formation of coatings of mixed
aluminum and manganese oxides on the AL25 alloy. Surf Eng Appl Electrochem 52(2):145–151
15. Karakurkchi AV, Sakhnenko ND, Ved MV, Luhovskyi IS, Drobakha HA, Mayba MV (2019)
Features of plasma electrolytic formation of manganese- and cobalt-containing composites on
aluminum alloys. Adv Mater Sci Eng 19(Article ID 6381291)
16. Labardi M, Allegrini M, Salerno M, Fredriani C, Ascoli C (1994) Dynamical friction coefficient
map using a scanning force and friction force microscope. Appl Phys 59
17. Arbizzani C, Borghini M, Mastragostino M, Meneghello L, Zanelli A (1994) Impedance
spectroscopy in electrode/electrolyte interface investigations. Solid State Ionics 72(2):115–121
18. Ved’ MV, Sakhnenko ND, Karakurkchi AV, Myrna TYu (2017) Functional mixed cobalt and
aluminum oxide coatings for environmental safety. Funct Mater 24(2):303–310
19. Glazoff MV, Zolotorevsky VS, Belov NA (2007) Casting aluminum alloys. Elsiever, Oxford,
p 544
20. Davis JR (1993) ASM specialty handbook: aluminum and aluminum alloys. ASM International,
Cleveland, OH
21. Dong H. (2010) Surface engineering of light alloys: aluminium, magnesium and titanium alloys.
Elsevier, p 680
22. Egorkin VS, Vyaliy IE, Sinebryukhov SL, Gnedenkov SV (2017) Composition, morphology
and tribological properties of PEO-coatings formed on an aluminum alloy D16 at different
duty cycles of the polarizing signal. Non-ferrous Met 42(1):12–16
23. Sakhnenko ND, Ved MV, Karakurkchi AV (2017) Nanoscale oxide PEO coatings forming
from diphosphate electrolytes. In: Fesenko O, Yatsenko L (eds) Nanophysics, nanomaterials,
interface studies, and applications. In: NANO 2016, Proceedings in physics, vol 195. Springer,
pp 159–184
24. Boguta DL, Rudnev VS, Yarovaya TP, Kaidalova TA, Gordienko PS (2002) On composition of anodic-spark coatings formed on aluminum alloys in electrolytes with polyphosphate
complexes of metals. Russ J Appl Chem 75(10):1605–1608
25. Ayday A, Durman M (2015) Growth characteristics of plasma electrolytic oxidation coatings
on aluminum alloys. Acta Physic Polon A 127(4):886–887
26. Ponomarev IS, Krivonosova EA, Gorchakov AI (2015) Investigation of discharge dynamics in
microarc oxidation of D16 aluminium alloy. Weld Intern 30(3):244–246
27. Rudnev VS, Vasilyeva MS, Kondrikov NB, Tyrina LM (2005) Plasma-electrolytic formation,
composition and catalytic activity of manganese oxide containing structures on titanium. Appl
Surf Sci 252(5):1211–1220
28. Sakhnenko ND, Ved MV, Karakurkchi AV (2019) Nanostructured mixed oxide coatings on
silumin incorporated by cobalt. Nanophys Nanomater Interface Studies Appl 221:269–291
29. Dudareva NYu, Abramova MM (2016) The structure of plasma-electrolytic coating formed on
Al–Si alloys by the micro-arc oxidation method. Prot Met Phys Chem Surf 52(1):128–132
30. Vasilyeva MS, Rudnev VS (2014) Composition, surface structure and catalytic properties of
manganese- and cobalt-containing oxide layers on titanium. Adv Mater Res 875–877:351–355
31. Yar-Mukhamedova GSh, Ved MV, Karakurkchi AV, Sakhnenko ND (2017) Mixed alumina and
cobalt containing plasma electrolytic oxide coatings. IOP Conf Ser Mater Sci Eng 213
32. Bykanova VV, Sakhnenko ND, Ved MV (2015) Synthesis and photocatalytic activity of coatings
based on the TixZnyOz system. Surf Eng Appl Elechtrochem 51(3):276–282
