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High Pressure Research
An International Journal
Volume 38, 2018 - Issue 1
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Articles

Dry mixing of diamond and n-layered graphene powders substantially different in density and particle size

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Pages 53-61 | Received 10 Jan 2017, Accepted 16 Oct 2017, Published online: 30 Oct 2017

References

  • Novoselov KS, Geim AK, Morozov SV, et al. Electric field effect in atomically thin carbon films. Science. 2004;5696:666–669. doi: 10.1126/science.1102896
  • El-Kady MF, Strong V, Dubin S, et al. Laser scribing of high-performance and flexible graphene-based electrochemical capacitors. Science. 2012;335:1326–1330. doi: 10.1126/science.1216744
  • Eletsky AV, Iskanderova IM, Knizhnik AA, et al. Graphene: production methods and thermophysical properties. Phys Usp. 2011;181:233–268. doi: 10.3367/UFNr.0181.201103a.0233
  • Gnatenko MF. Physics of the process and the design of a mixer for a dry mixing of powders that differ sharply in specific weight and particle size. Visnyk of Kharkiv Polytechnic Institute, Nat. Techn. Univer. 2012;59:19–24.
  • Metallovedenie i termicheskaya obrabotka stali i chuguna. Spravochnik (Metal science and thermal treatment of steel and cast iron. Reference book), Gudtsov, N.T., Bernshtein, M.L., Rakhshtadgl, A. G., Eds., Moscow: GNTIL on ferrous and nonferrous Metallurgy; 1956.
  • Graifer ED, Makotchenko VG, Nazarov AS, et al. Graphene: chemical approaches to synthesis and modification. Russ Chem Rev. 2011;80:784–804.
  • Clark SM, Jeon K-J, Chen J-Y, et al. Few-layer graphene under high pressure: Raman and X-ray diffraction studies. Solid State Commun. 2013;154:15–18. doi: 10.1016/j.ssc.2012.10.002
  • Sorokin, PB. Theoretical studies of physicochemical properties of low-dimensional structures, Dr. Sci. (Phys.–Math.) Dissertation, Moscow, 2014.
  • Shulzhenko AA, Gargin VG, Shishkin VA, et al. Polikristallicheskie materially na osnove almaza (Polycrystalline materials based on diamond). Kiev: Naukova Dumka; 1989.
  • Hu W, Li Z, Yang J. Diamond as an inert substrate of graphene. J Chem Phys. 2013;138:054701. doi:10.1063/1.4789420.
  • Ueda K, Aichi S, Asano H. Direct formation of graphene layers on diamond by high-temperature annealing with a Cu catalyst. Diamond Relat Mater. 2016;63:148–152. doi: 10.1016/j.diamond.2015.10.021
  • Graphene Nanoplatelets [Electronic resource] – www.cheaptubes.com/product-category/graphene-nanoplatelets/
  • N002-PDR Few Layer Graphene Powder [Electronic resource] – https://www.angstronmaterials.com/shop/n002-graphene-powder/
  • Shul’zhenko AA, Jaworska L, Sokolov AN, et al. Electrically conductive polycrystalline superhard material based on diamond and n-layer graphenes. Chem Chem Technol. (Izvestiya Vysshikh Uchebnykh Zavedeniy Seriya “Khimiya I Khimicheskaya Tekhnologiya” – in Russian). 2016;59:69–74.
  • Galashev AE. Computer simulation of heating of nickel films on two-layer graphene. Phys Solid State. 2014;56:1048–1053. doi: 10.1134/S1063783414050102

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