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Issue DateTitleAuthor(s)
2017Absorption of electromagnetic irradiation in arrays of carbon nanotubes in the cubterahertz rangeAtdayev, A.; Danilyuk, A. L.; Prischepa, S. L.
2019Anisotropic temperature dependent interaction of ferromagnetic nanoparticles embedded inside CNTPrischepa, S. L.; Danilyuk, A. L.
2020Anisotropy of Assemblies of Densely Packed Ferromagnetic Nanoparticles Embedded in Carbon NanotubesPrischepa, S. L.; Danilyuk, A. L.; Komissarov, I. V.
2021Emergence of topological defects in a bilayer of multiwalled carbon nanotubes irradiated by gamma-raysGrushevskaya, H.; Timoshchenko, A.; Lipnevich, I.
2024Fabrication of composite nanostructures for impedance biosensors using anodic aluminum oxide templates and carbon nanotubesVorobjova, A. I.; Tishkevich, D. I.; Outkina, E. A.; Yuan Yao; Razanau, I. U.; Zubar, T. I.; Rotkovich, A. A.; Bondaruk, A. A.; Sayyed, M. I.; Trukhanov, S. V.; Kubasov, I. V.; Fedosyuk, V. M.; Trukhanov, A. V.
2017Field emission cathodes based on structured carbon nanotube arraysCheng, Z. C.; Sun, L.; Serbun, Z. Y.; Kargin, N. I.; Labunov, V. A.; Shulitski, B. G.; Kashko, I. A.; Grapov, D. V.; Gorokh, G. G.
2020Functional Bi Coatings as a Perspective Material for Radiation Shields Production against Electron RadiationTishkevich, D. I.; Grabchikov, S. S.; Lastovskii, S. B.; Yakimchuk, D. V.; Vinnik, D. A.; Vorobjova, A. I.; Zubar, T. I.; Trukhanov, A. V.
2018Impact of aligned carbon nanotubes array on the magnetostatic isolation of closely packed ferromagnetic nanoparticlesDanilyuk, A. L.; Kukharev, A. V.; Cojocaru, C. S.; Normand, F. L.; Prischepa, S. L.
2017Impact of CNT medium on the interaction between ferromagnetic nanoparticlesDanilyuk, A. L.; Komissarov, I. V.; Kukharev, A. V.; Normand, F. Le; Hernandez, J. M.; Tejada, J.; Prischepa, S. L.
2022Improving the Conductivity of the PEDOT:PSS Layers in Photovoltaic Cells Based on Organometallic Halide PerovskitesSpivak, Y. M.; Muratova, E. N.; Moshnikov, V. A.; Tuchkovsky, A. K.; Vrublevsky, I. A.; Lushpa, N. V.
2016Influence of Magnetic Losses on Microwave Absorption by Carbon-Nanotube Nanocomposites with a Low Concentration of Ferromagnetic NanoparticlesAvramchuck, A. V.; Kasperovich, M. M.; Pevneva, N. A.; Gusinski, A. V.; Korolik, O. V.; Tivanov, M. S.; Shulitski, B. G.; Labunov, V. A.; Danilyuk, A. L.; Komissarov, I. V.; Prischepa, S. L.
2015Interaction of electromagnetic radiation in the 20–200 GHz frequency range with arrays of carbon nanotubes with ferromagnetic nanoparticlesAtdayev, A.; Danilyuk, A. L.; Prischepa, S. L.
2016Interaction of electromagnetic radiation with magnetically functionalized CNT nanocomposite in the subterahertz frequency rangeAtdayev, A.; Danilyuk, A. L.; Labunov, V. A.; Prischepa, S. L.; Pavlov, A. A.; Basaev, A. S.; Shaman, Yu. P.
2017Interrelation of planck thermal glow with current saturation effect of carbon nanotube field emittersWu, J.; Cheng, Z. C.; Sun, L.; Labunov, V. A.; Shulitski, B. G.; Kashko, I. A.; Grapov, D. V.; Kargin, N. I.
2015Manifestation of coherent magnetic anisotropy in a carbon nanotube matrix with low ferromagnetic nanoparticle contentDanilyuk, A. L.; Komissarov, I. V.; Labunov, V. A.; Le Normand, F.; Derory, A.; Hernandez, J. M.; Tejada, J.; Prischepa, S. L.
2013Plasma-mechanical oscillations in carbon nanotubes arrayDanilyuk, A. L.; Podryabinkin, D.
2019Self-Assembled Magnetically Isolated Co Nanoparticles Embedded Inside Carbon NanotubesPrischepa, S. L.; Danilyuk, A. L.; Kukharev, A. V.; Le Normand, F.; Cojocaru, C. S.
2014Specific Features of the Carbon Nanotubes Nucleation and Growth in the Porous Alumina MembraneVorobjova, A. I.; Prudnikava, A. L.; Shaman, Yu. P.; Shulitski, B. G.; Labunov, V. A.; Gavrilov, S.; Belov, A.; Basaev, A. S.
2008Автоэмиссионные структуры на основе пористого анодного оксида алюминия и углеродных нанотрубокСоловей, Д. В.
2022Косвенное обменное взаимодействие в углеродных нанотрубкахДанилюк, А. Л.; Кухарев, А. В.; Зайцев, В. А.; Прищепа, С. Л.