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Publications in Math-Net.Ru
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Atomic and electronic structures of chiral gold nanotubes
Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 14:4 (2022), 59–64
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Optical properties of defective carbon nanotube (7,7)
Nanosystems: Physics, Chemistry, Mathematics, 9:1 (2018), 73–75
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Dilatometric study of critical points of 13X11N2V2MF steel
Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 9:3 (2017), 66–71
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Selection of the optimal parameters for simulation of atomic and electronic structure of carbon nanotubes by SIESTA package
Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 7:3 (2015), 78–85
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Endohedral complexes of carbon nanotubes with lithium at finite temperature
Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 6:2 (2014), 63–67
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Quantum-chemical modeling of deformation processes of chiral carbon nanotubes
Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 5:1 (2013), 95–99
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Structure and mechanical properties of fluorinated carbon nanotubes
Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 2012, no. 7, 191–194
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Mechanical properties of the complexes of carbon nanotube (7,7) with single $\mathrm{Li}$, $\mathrm{Na}$, $\mathrm{S}$ and $\mathrm{Se}$ atoms
Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 2012, no. 7, 182–185
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Electrical properties of carbon nanotube $(7,7)$ complexes with single atoms $\mathrm{Li}$, $\mathrm{Na}$, $\mathrm{S}$ and $\mathrm{Se}$
Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 2012, no. 7, 113–119
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Electrical resistance of carbon nanotube with a metallic type of conductivity during mechanical loading and intercalation by sulfur
Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 2011, no. 5, 115–119
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Interaction of carbon nanotubes $(7,7)$ and $(8,8)$ with embedded atoms
Vestn. Yuzhno-Ural. Gos. Un-ta. Ser. Matem. Mekh. Fiz., 2010, no. 2, 87–91
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