Zaikovsky Alexey Vladimirovich

Position: Acting Head of the laboratory


Academic degree: Ph.D.


Telephone: +7 (383) 333-10-95, +7-951-390-5399


Lab telephone: -


Cabinet: 117


E-mail: zale@itp.nsc.ru / lexeyza@gmail.com


WOS ResearcherID: A-4067-2014


Scopus AI: 6507215036


РИНЦ SPIN: 3646-9470


ORCID ID: 0000-0003-2381-0789


Google Scholar

List of publications:

  1. Belikov A. E., Zaikovsky A. V., Mal’tsev V. A., Nerushev O. A., Novopashin S. A., Pakharukova V. P., Snytnikov P. V., Sakhapov C. Z., Smovzh D. V. The properties of carbon-carbonic condensate synthesized in plasma arc. Thermophysics and aeromechanic, 2009, Vol 16, No 4, pp. 647-650. DOI: 10.1134/S0869864309040155

  2. Zaikovskii A. V., Mal’tsev V. A., and Novopashin S. A. Plasma-Chemical Synthesis of Carbon and Composite Nanostructure Materials in an Electric Arc // Journal of Engineering Thermophysics, - 2010, - Vol. 19, - No. 2, pp. 94–101. DOI: 10.1134/S1810232810020050

  3. Smovzh D. V., Nerushev O. A., Koverznev M. P., Belikov A. E., Novopashin S. A., Sakhapov S. Z., Zamchii A. O. and Zaikovskii A. V. Investigation of products of thermal methane conversion in hydrocarbon mixtures by mass spectrometry // Journal of Engineering Thermophysics, - 2012, - Vol. 21, - No. 2, pp 131–135. DOI:10.1134/S181023281202004X

  4. Vostrikov A.A., Fedyaeva O.N., Shishkin A.V., Sokol M.Y., Zaikovskii A.V. SYNTHESIS OF FEXOY NANOPARTICLES DURING IRON OXIDATION BY SUPERCRITICAL WATER // Technical Physics Letters. 2012. V. 38. No 10. pp. 955-958. DOI: 10.1134/S1063785012100252

  5. Zaikovskii A. V., Mal’tsev V. A., and Novopashin S. A. Synthesis of Tungsten Carbide Nanoparticles in WO3 Pyrolysis in a Plasma Arc // Journal of Engineering Thermophysics, - 2013, - Vol. 22, - No. 1, pp. 77-85. DOI: 10.1134/S1810232813010098

  6. R.V. Gulyaev, E.M. Slavinskaya, S.A. Novopashin, D.V. Smovzh, A.V. Zaikovskii,D.Yu. Osadchii, O.A. Bulavchenko, S.V. Korenev, A.I. Boronin «Highly active PdCeOxcomposite catalysts for low-temperature COoxidation, prepared by plasma-arc synthesis» // Applied Catalysis B: Environmental, 147 (2014) 132– 143. DOI: 10.1016/j.apcatb.2013.08.043

  7. A.V. Zaikovskii Analysis of Phase Composition of Materials Synthesized in Carbon and Tungsten Trioxide Pyrolysis in a DC Electric Arc in Helium Medium // Journal of Engineering Thermophysics, - 2014, - Vol. 22, - No. 1, pp. 47 – 52. DOI: 10.1134/S1810232814010068

  8. D.V. Smovzh, S.Z. Sakhapov, A.V. Zaikovskii, S.A. Novopashin Morphology of aluminium oxide nanostructures after calcinations of arc discharge Al-C soot // Ceramics international, - 2015, -V. 41, pp. 8814-8819. DOI: 10.1016/j.ceramint.2015.03.110

  9. S.A Novopashin, N.A. Demin, A.V. Zaikovskii Pressure Dependent Magnetization of Arc Discharge Fe–C Soot // Materials Science Forum, - 2016, -V. 843, pp. 96-101.

  10. S. Ya. Khmel, E.A. Baranov, A.V. Zaikovskii, A.O. Zamchiy, E.A. Maximovskiy, D.V. Gulyaev, and K.S. Zhuravlev. Synthesis of silicon oxide nanowires by the GJ EBP CVD method using different diluent gases // Physica Status Solidi A, - 2016, - V. 213, N7, p. 1774-1782. DOI 10.1002/pssa.201532955

  11. Dmitry V. Smovzh, Ilya A. Kostogrud, Salavat Z. Sakhapov, Alexey V. Zaikovskii, Sergey A. Novopashin. The synthesis of few-layered graphene by the arc discharge sputtering of a Si-C electrode // Carbon, 112, 2017, 97-102. http://dx.doi.org/10.1016/j.carbon.2016.10.094

  12. M.A. Serebryakova, A.V. Zaikovskii, S.Z. Sakhapov, D.V. Smovzh, G.I. Sukhinin, S.A. Novopashin. Thermal conductivity of nanofluids based on hollow γ-Al2O3 nanoparticles, and the influence of interfacial thermal resistance // International Journal of Heat and Mass Transfer, 108, 2017, 1314-1319. http://dx.doi.org/10.1016/j.ijheatmasstransfer.2016.12.098

  13. Alexey V. Zaikovskii, Sergey A. Novopashin, Salovat Z. Sakhapov, Dmitriy V. Smovzh. Catalytic Pt-C nanomaterial for gas diffusion electrode: arc-discharge synthesis and improving of electrical conductivity properties.// Key Engineering Materials, 729, 2017, 58-62 DOI: 10.4028/www.scientific.net/KEM.729.58

  14. T.Yu. Kardash, E.M. Slavinskaya, R.V. Gulyaev, A.V. Zaikovskii, S.A.Novopashin, A.I.Boronin. Enhanced Thermal Stability of Pd/Ce–Sn–O Catalysts for CO Oxidation Prepared by Plasma-Arc Synthesis // Topics in Catalysis, 2017, - 60, pp.898-913 DOI: 10.1007/s11244-017-0755-7

  15. A.V. Zaikovskii, S.A. Novopashin. Electroconductive and magnetic properties of pure carbon soot produced in arc discharge: Regimes of various buffer gas pressure // Physica Status Solidi A, - 2017, - V. 214, №10, 1700142. DOI: 10.1002/pssa.201700142

  16. Sergey Khmel, Evgeniy Baranov, Andrey Barsukov, Alexandr Zamchiy, Alexey Zaikovskii, Evgeniy Maximovskiy, Dmitry Gulyaev, and Konstantin Zhuravlev. Title Indium-Assisted Plasma-Enhanced Low-Temperature Growth of Silicon Oxide Nanowires // Physica Status Solidi A, -2018, 215, 1700749 DOI: 10.1002/pssa.201700749

  17. Sakhapov, S. Z., Zaikovskii, A. V., Fedoseev, A. V., Sukhinin, G. I., & Novopashin, S. A. (2019). Core-shell Fe-C nanoparticles synthesis in a spherical striated glow discharge. // EPL (Europhysics Letters), 125(1), 15002. doi: 10.1209/0295-5075/125/15002

  18. Dmitry V. Smovzh, Salavat Z. Sakhapov, Alexey V. Zaikovskii, Svetlana A. Chernova, Sergey A. Novopashin. Formation mechanism of MgO hollow nanospheres via calcination of C-MgO composite produced by electric arc spraying // Ceramics International 45 (2019) 7338–7343 https://doi.org/10.1016/j.ceramint.2019.01.017

  19. Tatyana Y. Kardash, Elizaveta A. Derevyannikova, Elena M. Slavinskaya, Andrey I. Stadnichenko, Vasiliy A. Maltsev, Alexey V. Zaikovskii, Sergey A. Novopashin, Andrei I. Boronin and Konstantin M. Neyman. Pt/CeO2 and Pt/CeSnOx Catalysts for Low-Temperature CO Oxidation Prepared by Plasma-Arc Technique // Frontiers in chemistry, 2019, 7, 114 doi: 10.3389/fchem.2019.00114

  20. Alexey V. Zaikovskii, Tatiana Yu. Kardash, Boris A. Kolesov, and Olga A. Nikolaeva Graphene, SiC and Si Nanostructures Synthesis During Quartz Pyrolysis in Arc-Discharge Plasma // Phys. Status Solidi A 2019, 216(14), 1900079. DOI: 10.1002/pssa.201900079

  21. Alexey Zaikovskii, Sergey Novopashin, Vasiliy Maltsev, Tatyana Kardash, Inna Shundrina. Tin–carbon nanomaterial formation in a helium atmosphere during arc-discharge // RSC Adv., 2019, 9, 36621 DOI: 10.1039/c9ra05485e

  22. Zaikovskii, A. V., Iurchenkova, A. A., Kozlachkov, D. V., & Fedorovskaya, E. O. (2021). Effects of Tin on the Morphological and Electrochemical Properties of Arc-Discharge Nanomaterials. JOM, 73(3), 847-855. https://doi.org/10.1007/s11837-020-04556-z

List of projects:

Supervisor:

RFBR 16-38-00322 “Electrically conductive and paramagnetic carbon materials obtained by the plasma-arc method. Synthesis and electromagnetic properties "(supervisor A. V. Zaikovsky)

Russian Science Foundation 18-79-00038 "Physical effects that determine the structure of carbon material in the plasma-chemical synthesis of nanoparticles based on silicon and tin" (supervisor A.V. Zaikovsky)

Russian Science Foundation 20-79-00085 "Formation of metal - carbon, metal oxide - carbon nanostructures during plasma-chemical synthesis and thermal annealing" (supervisor A.V. Zaikovsky)

Participant:

Integration grant No. 124 “Catalytically active phases of platinum metals with oxides of variable valence elements. Synthesis, physicochemical and catalytic properties "

RFBR 12-08-31087 mol_a "Application of electrohydrodynamic self-oscillating mode for emission spectral express analysis of conducting liquids" (supervisor R.N. Medvedev)

FTP, Agreement No. 8646 "Plasma-arc synthesis and characterization of activated nanocomplexes" (supervisor SA Novopashin)

FTP, Agreement No. 8698 "The role of diffusion current in the formation and self-organization of spherical stratification of a gas discharge" (supervisor SZ Sakhapov)

RFBR 13-08-00838 a "Development of methods for combustion of gases in liquid with separate supply of fuel and oxidizer to the liquid" (supervisor V.S.Teslenko)

RFBR 14-03-01088 a “Highly active catalysts for the oxidation of carbon monoxide based on carbon palladium-tin-cerium composites obtained by the plasma-arc method. Synthesis, physicochemical and catalytic properties "(supervisor AI Boronin)

FTP, Agreement dated November 27, 2014. No. 14.616.21.0026 "Laser and plasma functionalization of materials at the nanoscale" (supervisor N.M. Bulgakova)

RSF. 14-19-01379 "Thermophysical properties of nanofluids" (supervisor S.A. Novopashin)

FTP, Agreement dated June 17, 2014. No. 14.604.21.0004 "Development of a technology for the synthesis of magnetic fluid based on magnetic nanoparticles on a carbon matrix" (supervisor SA Novopashin)

RFBR 15-08-05394 a "Synthesis of SiOx nanowires for solar cells by gas-jet chemical deposition with activation by electron-beam plasma" (supervisor S.Ya. Khmel)

RFBR 15-38-20454 "Plasma-chemical processes during the condensation of metal-carbon vapors in an electric arc" (head Smovzh DV)

RFBR 17-43-540738 "Thermostable platinum-cerium-tin composite oxide catalysts for cleaning exhaust gases obtained by plasma-arc sputtering" (supervisor T.Yu. Kardash)

RFBR 17-08-00731 "Formation of dusty nano- and microparticles in a spherical glow discharge" (supervisor G.I.Sukhinin)

RFBR 18-29-19099 MK "Heat transfer at the metal-graphene interface in nanoelectronics"

RNF 18-19-00213 "Non-equilibrium condensation of multicomponent vapors in an arc discharge" (supervisor D, V. Smovzh)

RFBR 19-42-543013 r_mol_a "Graphene-based strain gauges" (supervisor I. A. Kostogrud)

List of topics:

Investigation of the processes of plasma-chemical synthesis of nanomaterials

Investigation of the physical and chemical properties of nanomaterials

List of patents:

Patent of Russian Federation № 2433888. Zaikovsky A.V., Maltsev V.A., Novopashin S.A. Method for the synthesis of tungsten carbide nanoparticles. Priority dated May 21, 2010. Registered on September 20, 2011.

Patent of Russian Federation № 125183. Zaikovsky A.V., Smovzh D.V., Novopashin S.A. Installation for the production of nanocrystalline carbon and hydrogen. Priority dated June 13, 2012 Registered on February 27, 2013

Patent of Russian Federation № 2532756. Novopashin S. A., Smovzh D. V., Zaykovsky A. V. Method of synthesis of nanostructured composite CeO2 - PdO material // Registered 12.09. 2014 Priority from 01.07.2013

Patent of Russian Federation № 2530070 . Novopashin S.A., Smovzh D.V., Zaikovsky A.V., Kalyuzhny N.A. METHOD FOR THE SYNTHESIS OF HOLLOW GAMMA-AL2O3 NANOPARTICLES. Patent for invention of the Russian Federation Registered on 12.08.2014. Priority from 04/23/2013

Patent of Russian Federation № 2588536. Novopashin S.A., Smovzh D.V., Zaikovsky A.V., Sakhapov S.Z. Method for the synthesis of titanium dioxide nanoparticles. Priority from 15.12.2014, registered 06.06.2016.

Patent of Russian Federation № 2597093. Novopashin S.A. b Smovzh D.V., Zaykovsky A.V. Method for the synthesis of powder of superparamagnetic Fe2O3 nanoparticles. Priority June 25, 2015 Registered August 16, 2016

Patent of Russian Federation № 2681630. Smovzh D.V., Novopashin S.A., Zaikovsky A.V., Sakhapov S.Z. Arc method for producing graphene. Registered in the State. registry 11.03.2019. Priority 12/28/2017.

List of awards:

1. Diploma of the second degree of the II All-Russian seminar "Fundamentals of MEMS and nanotechnology", 2010

2. Diploma of the second degree of the XII International School-Conference of Young Scientists "Topical Issues of Thermophysics and Physical Fluid Dynamics", 2012

3. Scholarship of the President of the Russian Federation for young scientists and graduate students carrying out promising research and development in priority areas of modernization of the Russian economy (SP-2987.2013.1)

4. Scholarship of the President of the Russian Federation for young scientists and graduate students carrying out promising research and development in priority areas of modernization of the Russian economy (SP-677.2016.1)

5. Diploma of recognition for the best oral presentation of the II Russian-Japanese conference "Advanced Materials: Synthesis, Processing and Properties of Nanostructures", 2016

6. Academician Alexander Merzhanov award for the best work in material science, 2020

Scientific group: