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Публикации в ведущих научных изданиях, входящих в базы Scopus или Web of Science:

  1. Heat capacity of 1D methane chains in the grooves of bundles of carbon nanotubes.
    Fiz. Nizk. Temp. 42, 128 (2016) [Low Temp. Phys. 42, 94 (2016)]
    M.I. Bagatskii, V.V. Sumarokov.
  2. The low temperature heat capacity of fullerite C60.
    Fiz. Nizk. Temp. 41, 812 (2015) [Low Temp. Phys. 41, 630 (2015)]
    M.I. Bagatskii, V.V. Sumarokov, A.V. Dolbin, B. Sundqvist.
  3. Heat Capacity of 1D Chains of Atom/Molecule Adsorbates in the Grooves of c-SWNT Bundles.
    Nanocomposites, Nanophotonics, Nanobiotechnology, and Applications, O. Fesenko, L.Yatsenko (eds.), Springer International Publishing, Switzerland (2015).
    V.V. Sumarokov, M.I. Bagatskii.
  4. The Heat Capacity of Nanotube Bundles with 1D Chains of Gas Adsorbates.
    Nanotechnology in the Security Systems, NATO Science for Peace and Security Series C: Environmental Security, J. Bonča and S. Kruchinin (eds.), Springer Science+Business Media Dordrecht (2015).
    M.I. Bagatskii, V.V. Sumarokov.
  5. Thermal vacancies in one-dimentional Xe adsorbate chains in grooves of nanotube bundles.
    JETP Letters. 99, 461 (2014).
    M.I. Bagatskii, V.V. Sumarokov.
  6. Low-temperature dynamics of matrix isolated methane molecules in fullerite C60. The heat capacity, isotope effects.
    Fiz. Nizk. Temp. 40, 873 (2014) [Low Temp. Phys. 40, 678 (2014)]
    M.I. Bagatskii, V.G. Manzhelii, V.V. Sumarokov, A.V. Dolbin, B. Sundqvist.
  7. Experimental low-temperature heat capacity of one-dimensional xenon adsorbate chains in the grooves of carbon c-SWNT bundles.
    Fiz. Nizk. Temp. 39, 801 (2013) [Low Temp. Phys. 39, 618 (2013)]
    M.I. Bagatskii, V.G. Manzhelii, V.V. Sumarokov.
  8. The heat capacity of nitrogen chain in grooves of single-walled carbon nanotube bundles.
    Fiz. Nizk. Temp. 39, 568 (2013) [Low Temp. Phys. 39, 441 (2013)]
    M.I. Bagatskii, V.V. Sumarokov.
  9. The specific heat and the radial thermal expansion of bundles of single-walled carbon nanotubes.
    Fiz. Nizk. Temp. 38, 667 (2012) [Low Temp. Phys. 38, 523 (2012)]
    M.I. Bagatskii, A.V. Dolbin, V.V. Sumarokov, B. Sundqvist.
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