Voir la notice de l'article provenant de la source Math-Net.Ru
@article{PFMT_2024_4_a4, author = {A. S. Rudenkov and A. V. Rogachev and M. A. Yarmolenko and D. G. Piliptsou and Yu. V. Nikityuk}, title = {Morphology and phase composition of carbon coatings formed on the surface of two-layer system}, journal = {Problemy fiziki, matematiki i tehniki}, pages = {30--39}, publisher = {mathdoc}, number = {4}, year = {2024}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/PFMT_2024_4_a4/} }
TY - JOUR AU - A. S. Rudenkov AU - A. V. Rogachev AU - M. A. Yarmolenko AU - D. G. Piliptsou AU - Yu. V. Nikityuk TI - Morphology and phase composition of carbon coatings formed on the surface of two-layer system JO - Problemy fiziki, matematiki i tehniki PY - 2024 SP - 30 EP - 39 IS - 4 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/PFMT_2024_4_a4/ LA - ru ID - PFMT_2024_4_a4 ER -
%0 Journal Article %A A. S. Rudenkov %A A. V. Rogachev %A M. A. Yarmolenko %A D. G. Piliptsou %A Yu. V. Nikityuk %T Morphology and phase composition of carbon coatings formed on the surface of two-layer system %J Problemy fiziki, matematiki i tehniki %D 2024 %P 30-39 %N 4 %I mathdoc %U http://geodesic.mathdoc.fr/item/PFMT_2024_4_a4/ %G ru %F PFMT_2024_4_a4
A. S. Rudenkov; A. V. Rogachev; M. A. Yarmolenko; D. G. Piliptsou; Yu. V. Nikityuk. Morphology and phase composition of carbon coatings formed on the surface of two-layer system. Problemy fiziki, matematiki i tehniki, no. 4 (2024), pp. 30-39. http://geodesic.mathdoc.fr/item/PFMT_2024_4_a4/
[1] D.G. Piliptsov, A.S. Rudenkov, P.A. Luchnikov, A.V. Rogachev, Tszyan Syao Khun, Chzhou Bin, Kompozitsionnye uglerodnye pokrytiya, osazhdennye iz impulsnoi katodnoi plazmy, Radiotekhnika, M., 2020, 283 pp.
[2] C. Varodi et al., “Nitrogen and Sulfur Co-Doped Graphene as Efficient Electrode Material for L-Cysteine Detection”, Chemosensors, 9 (2021), 146-173 | DOI
[3] C. Goyenola et al., “Fullerene-like CSx: A first-principles study of synthetic growth”, Chemical Physics Letters, 506 (2011), 86-91 | DOI
[4] D. Rogala-Wielgus, A. Zieliński, “Preparation and properties of composite coatings, based on carbon nanotubes, for medical applications”, Carbon Letters, 34 (2024), 565-601 | DOI
[5] H. Hogberg et al., “Reactive sputtering of CSx thin solid films using CS$_2$ as precursor”, Vacuum, 182 (2020), 109775 | DOI
[6] B. Zhou, Xiaohong Jiang, Zhubo Liu, A.V. Rogachev, Ruiqi Shen, D.G. Piliptsou, “Synthesis of diamond-like carbon film on copper and titanium interlayer by vacuum cathode arc evaporation”, Applied Mechanics and Materials, 189 (2012), 167-171 | DOI
[7] C. Varodi et al., “Nitrogen and Sulfur Co-Doped Graphene as Efficient Electrode Material for L-Cysteine Detection”, Chemosensors, 9 (2021), 146-173 | DOI
[8] A.I. Sidorina, “Modifikatsiya poverkhnosti uglerodnykh armiruyuschikh napolnitelei dlya polimernykh kompozitsionnykh materialov elektrokhimicheskoi obrabotkoi”, Trudy VIAM, 2022, no. 4, 61-75
[9] A.S. Kolobkov, “Razvitie tekhnologii polucheniya uglerodnykh volokon”, Trudy VIAM, 2022, no. 8, 123-131
[10] A.G. Amelin, Tekhnologiya sernoi kisloty, uchebnoe posobie dlya vuzov, Khimiya, M., 1983, 360 pp.
[11] A. Bellami, Infrakrasnye spektry slozhnykh molekul, Mir, M., 1963, 592 pp.
[12] M. Cloutier et al., “Long-term stability of hydrogenated DLC coatings: Effects of aging on the structural, chemical and mechanical properties”, Diamond and Related Materials, 48 (2014), 65-72 | DOI
[13] A.S. Ferrari, “Determination of bonding in diamond-like carbon by Raman spectroscopy”, Diamond and Related Materials, 11 (2002), 1053-1061 | DOI
[14] J. Wagner et al., “Resonant Raman scattering of amorphous carbon and polycrystalline diamond films”, Physical Review B, 40 (1989), 1817-4107 | DOI
[15] A.S. Ferrari, J. Robertson, “Interpretation of Raman spectra of disordered and amorphous carbon”, Physical Review B, 61 (2000), 4095-4107 | DOI
[16] A.S. Rudenkov, A.V. Rogachev, D.G. Piliptsov, N.N. Fedosenko, Syan Khun Dzhang, “Vliyanie ionnogo azotirovaniya na fazovyi sostav, strukturu i svoistva uglerodnykh pokrytii”, Problemy fiziki, matematiki i tekhniki, 2016, no. 1 (26), 37-42
[17] A.S. Rudenkov, A.V. Rogachev, D.G. Piliptsov, “Morfologiya i fazovyi sostav legirovannykh kremniem uglerod-titanovykh pokrytii”, Problemy fiziki, matematiki i tekhniki, 2021, no. 3 (48), 37-41
[18] A.S. Rudenkov, A.V. Rogachev, D.G. Piliptsov, A.N. Kupo, A.S. Pobiyakha, P.A. Luchnikov, “Morfologiya i fazovyi sostav kremnii-uglerodnykh pokrytii”, «Nanomaterialy i nanostruktury - XXI vek», 10:1 (2019), 35-42 | Zbl
[19] R.W. Bormett et al., “Ultraviolet Raman spectroscopy characterizes chemical vapor deposition diamond film growth and oxidation”, Journal of Applied Physics, 77 (1995), 5916-5923 | DOI
[20] J. Shwan et al., “Raman spectroscopy on amorphous carbon films”, Journal of Applied Physics, 80 (1996), 440-447 | DOI
[21] X. Chen, X. Wang, D. Fang, “A review on C1s XPS-spectra for some kinds of carbon materials”, Fullerenes, Nanotubes and Carbon Nanostructures, 28 (2020), 1048-1058 | DOI
[22] Z.E. Pettifer, J.S. Quinton, S.L. Harmer, “Reconstruction of pyrrhotite fracture surfaces”, Minerals Engineering, 184 (2022), 107666 | DOI
[23] M. Yu. Smirnov i dr., “Ispolzovanie effekta differentsialnoi zaryadki v metode RFES dlya ustanovleniya prirody poverkhnostnykh soedinenii, obrazuyuschikhsya pri vzaimodeistvii s SO$_x$ modelnogo katalizatora Pt / (BaCo$_3$ + CeO$_2$)”, Kinetika i kataliz, 52 (2011), 605-614
[24] A.L. Yudin, Rentgenovskaya fotoelektronnaya spektroskopiya, ucheb.-metod. posobie, Kemerovo, 2004, 47 pp.