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Mendeleev Communications, 2011, Volume 21, Issue 5, Pages 264–265
DOI: https://doi.org/10.1016/j.mencom.2011.09.011
(Mi mendc2938)
 

This article is cited in 11 scientific papers (total in 11 papers)

Electrochemical activation of carbon nanowalls

V. A. Krivchenkoa, Yu. M. Maksimovb, B. I. Podlovchenkob, A. T. Rakhimova, N. V. Suetina, M. A. Timofeeva

a D.V. Skobeltsyn Institute of Nuclear Physics, M.V. Lomonosov Moscow State University, Moscow, Russian Federation
b Department of Chemistry, M.V. Lomonosov Moscow State University, Moscow, Russian Federation
Abstract: The electrochemical oxidation of carbon nanowalls resulted in an essential improvement of the capacitance.
Document Type: Article
Language: English


Citation: V. A. Krivchenko, Yu. M. Maksimov, B. I. Podlovchenko, A. T. Rakhimov, N. V. Suetin, M. A. Timofeev, “Electrochemical activation of carbon nanowalls”, Mendeleev Commun., 21:5 (2011), 264–265
Linking options:
  • https://www.mathnet.ru/eng/mendc2938
  • https://www.mathnet.ru/eng/mendc/v21/i5/p264
  • This publication is cited in the following 11 articles:
    1. A. B. Kuriganova, I. N. Leontyev, M. V. Avramenko, N. A. Faddeev, N. V. Smirnova, “Graphene structures prepared via pulse alternating current technique”, Mendeleev Commun., 32:3 (2022), 308–310  mathnet  crossref
    2. Anastasios Karakassides, Abhijit Ganguly, Kyriaki Tsirka, Alkiviadis S. Paipetis, Pagona Papakonstantinou, “Radially Grown Graphene Nanoflakes on Carbon Fibers as Reinforcing Interface for Polymer Composites”, ACS Appl. Nano Mater., 3:3 (2020), 2402  crossref
    3. Stanislav A. Evlashin, Yurii M. Maksimov, Pavel V. Dyakonov, Andrey A. Pilevsky, Konstantin I. Maslakov, Yuri A. Mankelevich, Ekaterina N. Voronina, Sergei V. Vavilov, Alexander A. Pavlov, Elena V. Zenova, Iskander S. Akhatov, Nikolay V. Suetin, “N-Doped Carbon NanoWalls for Power Sources”, Sci Rep, 9:1 (2019)  crossref
    4. Zhenmin Jiao, Qianqian Wu, Jun Qiu, “Preparation and electrochemical performance of hollow activated carbon fiber - Carbon nanotubes three-dimensional self-supported electrode for supercapacitor”, Materials & Design, 154 (2018), 239  crossref
    5. Yu. M. Maksimov, B. I. Podlovchenko, E. M. Gallyamov, S. A. Dagesyan, V. V. Sen, S. A. Evlashin, “Galvanic displacement of silver deposited on carbon nanowalls by palladium and the electrocatalytic behavior of the resulting composite”, Mendeleev Commun., 27:4 (2017), 382–384  mathnet  crossref
    6. A. G. Krivenko, N. S. Komarova, E. V. Stenina, L. N. Sviridova, K. V. Mironovich, Yu. M. Shul'ga, R. A. Manzhos, S. V. Doronin, V. A. Krivchenko, “Electrochemical modification of electrodes based on highly oriented carbon nanowalls”, Russ J Electrochem, 51:10 (2015), 963  crossref
    7. Yonhua Tzeng, Shoupu Yeh, Wei Cheng Fang, Yuehchieh Chu, “Nitrogen-incorporated ultrananocrystalline diamond and multi-layer-graphene-like hybrid carbon films”, Sci Rep, 4:1 (2014)  crossref
    8. L. N. Sviridova, V. A. Krivchenko, K. V. Mironovich, P. V. Voronin, A. G. Krivenko, E. V. Stenina, “Adsorption-induced Functionalization of Carbon Nanowalls”, Mendeleev Commun., 24:5 (2014), 304–305  mathnet  crossref
    9. Yonhua Tzeng, Wai Leong Chen, Chiahao Wu, Jui-Yung Lo, Chiuan-Yi Li, “The synthesis of graphene nanowalls on a diamond film on a silicon substrate by direct-current plasma chemical vapor deposition”, Carbon, 53 (2013), 120  crossref
    10. A. Achour, S. Vizireanu, G. Dinescu, L. Le Brizoual, M.-A. Djouadi, M. Boujtita, “Electrochemical anodic oxidation of nitrogen doped carbon nanowall films: X-ray photoelectron and Micro-Raman spectroscopy study”, Applied Surface Science, 273 (2013), 49  crossref
    11. P. V. Voronin, V. A. Krivchenko, D. M. Itkis, D. A. Semenenko, A. T. Rakhimov, “Films of nanocrystalline graphite synthesized in dc discharge plasma as a material for electrochemical capacitors”, Tech. Phys. Lett., 38:9 (2012), 800  crossref
    Citing articles in Google Scholar: Russian citations, English citations
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