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Issue | Title | |
Vol 7, No 1 (2016): Special Issue: Proceedings of the 12th Biennial International Conference “Advanced Carbon Nanostructures” (ACNS’2015) | Synthesis of high-purity multilayer graphene using plasma jet | Abstract PDF (Eng) similar documents |
R. H. Amirov, M. E. Iskhakov, M. B. Shavelkina | ||
"... A method to synthesize graphene materials using a DC high current divergent plasma torch has been ..." | ||
Vol 5, No 2 (2014) | Synthesis of graphene nanoplatelets from peroxosulfate graphite intercalation compounds | Abstract PDF (Eng) similar documents |
A. V. Melezhyk, A. G. Tkachev | ||
"... intercalated with peroxodisulfuric acid was shown to allow the creation of graphene nanoplatelets ..." | ||
Vol 7, No 2 (2016): Special Issue | An interpretation of the strongest X-ray diffraction peak for various carbon nanoclusters | Abstract PDF (Eng) similar documents |
A. V. Siklitskaya, S. G. Yastrebov, R. Smith | ||
"... of epitaxial graphene. A reconstruction of the X-ray diffraction pattern using an intershell distribution ..." | ||
Vol 15, No 6 (2024) | Biomedical applications of graphene-based nanomaterials in gene delivery, tissue engineering, biosensing and for the development antibacterial agents | Abstract PDF (Eng) similar documents |
K. N. Semenov, S. V. Ageev, O. S. Shemchuk, G. O. Iurev, Abdelsattar O. E. Abdelhalim, I. V. Murin, P. K. Kozhukhov, A. V. Penkova, D. N. Maystrenko, O. E. Molchanov, V. V. Sharoyko | ||
"... Graphene and graphene oxide have emerged as promising materials in various biomedical applications ..." | ||
Vol 10, No 1 (2019) | Direct synthesis of hydrogenated graphene via hydrocarbon decomposition in plasmas | Abstract PDF (Eng) similar documents |
M. B. Shavelkina, R. H. Amirov | ||
"... We study graphene synthesis in a plasma-jet reactor. Graphene is obtained via decomposition ..." | ||
Vol 5, No 1 (2014) | Graphene edge spins: spintronics and magnetism in graphene nanomeshes | Abstract PDF (Eng) similar documents |
T. Hashimoto, S. Kamikawa, Y. Yagi, J. Haruyama, H. Yang, M. Chshiev | ||
"... We have fabricated low-defect graphene nanomeshes (GNMs) by using a non-lithographic method ..." | ||
Vol 11, No 2 (2020) | Electronic transport in penta-graphene nanoribbon devices using carbon nanotube electrodes: A computational study | Abstract PDF (Eng) similar documents |
M. Shunaid Parvaiz, Khurshed A. Shah, G. N. Dar, Sugata Chowdhury, Olasunbo Farinre, Prabhakar Misra | ||
"... saw-tooth penta-graphene nanoribbon (SPGNR) with carbon nanotube electrodes have been studied using ..." | ||
Vol 13, No 4 (2022) | Ageing of graphene oxide thin films: the dynamics of gas and water vapors permeability in time | Abstract PDF (Eng) similar documents |
E. A. Chernova, K. E. Gurianov, M. V. Berekchiian, V. A. Brotsman, R. G. Valeev, O. O. Kapitanova, A. V. Kirianova, A. V. Lukashin | ||
"... Composite membranes are formed based on ultrathin 20 nm-thick selective layers of graphene oxide ..." | ||
Vol 14, No 2 (2023) | Comparative study of transport properties of membranes based on graphene oxide prepared by Brodie and improved Hummers’ methods | Abstract PDF (Eng) similar documents |
E. A. Chernova, K. E. Gurianov, V. A. Brotsman, R. G. Valeev, O. O. Kapitanova, M. V. Berekchiian, A. V. Lukashin | ||
"... by the difference in microstructural features of the H-GO and B-GO. Graphene oxide prepared by Hummer’s method has ..." | ||
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