Перегляд за автором "Dolbin, A.V."

Сортувати за: Порядок: Результатів:

  • Dolbin, A.V.; Khlistyuck, M.V.; Esel'son, V.B.; Gavrilko, V.G.; Vinnikov, N.A.; Basnukaeva, R.M.; Maluenda, I.; Maser, W.K.; Benito, A.M. (Физика низких температур, 2016)
    The sorption of⁴He by graphene oxide powders thermally reduced at T = 200, 300, 500, 700, 900 ºC has been investigated in the interval 1.5–290 K. The measured dependence of the quantity of sorbed helium upon the ...
  • Dolbin, A.V.; Khlistuck, M.V.; Esel’son, V.B.; Gavrilko, V.G.; Vinnikov, N.A.; Basnukaeva, R.M.; Prokhvatilov, A.I.; Legchenkova, I.V.; Meleshko, V.V.; Maser, A.M.; Benito, W.K. (Физика низких температур, 2017)
    The kinetics of the sorption and the subsequent desorption of ⁴He by the starting graphite oxide (GtO) and the thermally reduced graphene oxide samples (TRGO, T reduction = 200, 300, 500, 700 and 900 °C) have been investigated ...
  • Bagatskii, M.I.; Sumarokov, V.V.; Barabashko, M.S.; Dolbin, A.V.; Sundqvist, B. (Физика низких температур, 2015)
    The heat capacity at constant pressure of fullerite C₆₀ has been investigated using an adiabatic calorimeter in a temperature range from 1.2 to 120 K. Our results and literature data have been analyzed in a temperature ...
  • Dolbin, A.V.; Esel'son, V.B.; Gavrilko, V.G.; Manzhelii, V.G.; Popov, S.N.; Vinnikov, N.A.; Sundqvist, B. (Физика низких температур, 2010)
    The effect of a N₂ impurity on the radial thermal expansion coefficient αr of single-walled carbon nanotube bundles has been investigated in the temperature interval 2.2–43K by the dilatometric method. Saturation of nanotube ...
  • Manzhelii, V.G.; Dolbin, A.V.; Esel’son, V.B.; Gavrilko, V.G.; Gadd, G.E.; Moricca, S.; Cassidy, D.; Sundqvist, B. (Физика низких температур, 2006)
    The linear coefficients α(T) of N₂–C₆₀ solutions with 9.9% and 100% of the C₆₀ lattice interstitials filled with N₂ have been investigated in the interval 2.2–24 K. The dependence α(T) has a hysteresis suggesting ...
  • Dolbin, A.V.; Khlistuck, M.V.; Eselson, V.B.; Gavrilko, V.G.; Vinnikov, N.A.; Basnukaeva, R.M.; Konstantinov, V.A.; Luchinskii, K.R.; Nakazawa, Y. (Физика низких температур, 2019)
    The temperature dependence of the linear thermal expansion coefficients (LTEC) of a single crystal of α-(BEDT-TTF)₂NH₄Hg(SCN)₄ where BEDT-TTF is bis(ethylenedithio)tetrathiafulvalene was studied by the method of precision ...
  • Dolbin, A.V.; Khlistuck, M.V.; Eselson, V.B.; Gavrilko, V.G.; Vinnikov, N.A.; Basnukaeva, R.M.; Konstantinov, V.A.; Nakazawa, Y. (Физика низких температур, 2018)
    Linear thermal expansion coefficient (LTEC) of single crystal κ-(D₄-BEDT-TTF)₂Cu[N(CN)₂]Br was studied across the crystal layers in the temperature range 2–290 K using the method of precise capacitive dilatometry. Below ...
  • Dolbin, A.V.; Khlistuck, M.V.; Eselson, V.B.; Gavrilko, V.G.; Vinnikov, N.A.; Basnukaeva, R.M.; Konstantinov, V.A.; Nakazawa, Y. (Физика низких температур, 2017)
    Linear thermal expansion coefficient (LTEC) of single crystal κ-(D₄-BEDT-TTF)₂Cu[N(CN)₂]Br was studied across the crystal layers in the temperature range 2–290 K using the method of precise capacitive dilatometry. Below ...
  • Aleksandrovskii, A.N.; Gavrilko, V.G.; Dolbin, A.V.; Esel`son, V.B.; Manzhelii, V.G.; Udovidchenko, B.G. (Физика низких температур, 2003)
    A negative contribution of the CH₄ impurity to the thermal expansion of the solution has been revealed in the dilatometric studies of solid Kr + 0.76% CH4, Kr + 5.25% CH₄, and Kr + 10.5% CH₄ solutions at 1-23 K. It is shown ...
  • Bagatskii, M.I.; Barabashko, M.S.; Dolbin, A.V.; Sumarokov, V.V. (Физика низких температур, 2012)
    The specific heat at constant pressure C(T) of bundles of single-walled carbon nanotubes (SWNTs) closed at their ends has been investigated in a temperature interval of 2–120 K. It is found that the curve C(T) has ...
  • Dolbin, A.V. (Functional Materials, 2009)
    The radial thermal expansion coefficient αr of pure and Xe-saturated bundles of singlewalled carbon nanotubes has been measured in the interval 2.2-120 K. The coefficient is positive above T = 5.5 K and negative at lower ...