Nevolin Vladimir Kirillovich
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Nevolin Vladimir Kirillovich

Head
National Research University of Electronic Technology - MIET


Highest Degree
Doctorate in Physical and Mathematical Sciences from National Research University of Electronic Technology, Russia

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Area of Interest:

Physics
100%
Nanotechnology
62%
Carbon Nanomaterials
90%
Microscopy
75%

Research Publications in Numbers

Books
0
Chapters
0
Articles
37
Abstracts
0

Selected Publications

  1. Polikarpov, Y.A., A.V. Romashkin, D.D. Levin, N.S. Struchkov and E.V. Alexandrov et al., 2020. Comparison of cell growth on the poly (lactic acid) surface coated with separate collagen fibrils with and without plasma treatment. 2019 IEEE 19th International Conference on Bioinformatics and Bioengineering (BIBE), October 28-30, 2019, IEEE Xplore, Tunis, Tunisia, pp: 92-102.
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  2. Babaev, A.V., V.K. Nevolin, V.N. Statsenko, S.D. Fedotov and K.A. Tsarik, 2020. Singularities of the thin AlN layers formation by molecular beam epitaxy on 3C-SIC/SI(111) templates with on-axis and 4u00b0 off-axis disorientation. Mech. Solids, 55: 84-89.
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  3. Tsarik, K., V.K. Nevolin, A.I. Martynov and S. Fedotov, 2019. Formation of nanosized elements by ion beam lithography for multiple fin field effect transistor prototyping. Int. Conf. Micro- Nano-Electrons., 10.1117/12.2522109.
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  4. Tsarik, K., S.D. Fedotov, V.K. Nevolin and V.N. Statsenko, 2019. Structural and morphological properties of Ga(Al)N grown by MBE on 3C-SIC/SI (111) templates with off-axis and on-axis substrate orientation. Int. Conf. Micro- Nano-Electrons. 2018, 10.1117/12.2521959.
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  5. Romashkin, A.V., Y.A. Polikarpov, N.S. Struchkov, G.O. Silakov, V.A. Petukhov, D.D. Levin and V.K. Nevolin, 2019. Highly hydrophilic and stable polylactic acid surface achieved by argon plasma treatment. J. Phys.: Conf. Ser., 10.1088/1742-6596/1410/1/012071.
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  6. Polikarpov, Y.A., A.V. Romashkin, D.D. Levin, N.S. Struchkov and V.A. Petukhov et al., 2019. Cell growth improvement on the poly (lactic acid) surface with spray deposited separate native collagen fibrils. 2019 Med. Technol. Congress, 10.1109/tiptekno.2019.8895231.
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  7. Nekrasov, N., S. Khartov, I. Bobrinetskii and V. Nevolin, 2019. Improving the selectivity of carbon nanotube-based gas sensors via UV irradiation. Int. Conf. Micro- Nano-Electrons. 2018, 10.1117/12.2522440.
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  8. Agim, M.U., I.A. Adikwu, J.O. Chiekyula and O.B. Kwaghvihi, 2019. Performance evaluation of a developed fish smoking Kiln in Benue State, Nigeria. Octa J. Environ. Res., 7: 19-28.
  9. Romashkin, A.V., N.S. Struchkov, Y.A. Polikarpov, V.A. Petukhov, D.D. Levin and V.K. Nevolin, 2018. Polylactide film deposition onto titanium surface from different solutions. J. Phys.: Conf. Ser., 10.1088/1742-6596/1124/3/031027.
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  10. Polikarpov, Y.A., A.V. Romashkin, V.A. Petukhov and V.K. Nevolin, 2018. Formation of the nanoscale contacts structure based on cross-junction of carbon nanotubes for the study of organic materials. Nanosystems: Phys., Chem., Math., 9: 89-91.
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  11. Morozov, R.A., A.V. Nikitina, A.V. Romashkin, I.A. Suetina, M.V. Mezentseva and V.K. Nevolin, 2017. Peculiarities of the growth and morphology of human fibroblasts cultured on substrates modified with nanosized fibers of collagen and chitosan. Biophysics, 62: 595-602.
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  12. Kondrashov, V.A., N.S. Struchkov, R.Y. Rozanov, V.K. Nevolin, D.S. Kopylova and A.G. Nasibulin, 2017. Graphene oxide reduction by solid-state laser irradiation for bolometric applications. Nanotechnology, 10.1088/1361-6528/aa9de1.
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  13. Rozanov, R.Y., V.A. Kondrashov, V.K. Nevolin and Y.A. Chaplygin, 2016. Characteristics of chloride memristors based on nanothick metal films. Russian Microelectron., 45: 26-32.
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  14. Levin, D.D., I.I. Bobrinetskiy, A.V. Emelianov, V.K. Nevolin, A.V. Romashkin and V.A. Petuhov, 2016. Surface functionalization of single-layer and multilayer graphene upon ultraviolet irradiation. Semiconductors, 50: 1738-1743.
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  15. Lavrentyev, K.K., V.K. Nevolin, R.Y. Rozanov, K.A. Tsarik and A.A. Zaitsev, 2016. Formation of nanosized elements of microwave transistor gates by ion beam lithography. Russian Microelectron., 45: 451-454.
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  16. Glukhova, O.E., V.A. Kondrashov, V.K. Nevolin, I.I. Bobrinetsky, G.V. Savostyanov and M.M. Slepchenkov, 2016. Prediction of the stability and electronic properties of carbon nanotori synthesized by a high-voltage pulsed discharge in ethanol vapor. Semiconductors, 50: 502-507.
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  17. Chaplygin, E.Y., R.A. Morozov and V.K. Nevolin, 2015. On the possibility of biopolymer fragment analysis by tunneling microscopy. Biophysics, 60: 25-29.
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  18. Bobrinetskii, I.I., A.V. Volkova, A.A. Zaitsev, V.K. Nevolin, K.A. Tsarik and A.A. Chudinov, 2015. Silicon-based nanostructures formed by plasma etching through a mask formed by a focused beam of Ga+ ions. Russian Microelectron., 44: 482-486.
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  19. Akhmadishina, K.F., I.I. Bobrinetskiy, I.A. Komarov, A.M. Malovichko and V.K. Nevolin et al., 2015. Fast-response biological sensors based on single-layer carbon nanotubes modified with specific aptamers. Semiconductors, 49: 1749-1753.
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  20. Bobrinetskiy, I.I., A.V. Emelianov, V.K. Nevolin and A.V. Romashkin, 2014. Effect of an organic molecular coating on control over the conductance of carbon nanotube channel. Semiconductors, 48: 1735-1741.
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  21. Fazylov, F.R. and V.K. Nevolin, 2013. Macroscopic theory of adhesion in solids. Philos. Mag., 93: 2864-2874.
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  22. Nevolin, V.K. and I.I. Bobrinetskiy, 2009. Probe nanotechnology in electronics and nanosystems. Phys., Chem. Appl. Nanostruct., 10.1142/9789814280365_0111.
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