All Stories

  1. V International Conference “Condensed Matter and Low Temperature Physics 2025” (CM&LTP 2025) Kharkiv, Ukraine, June 2–6, 2025 (Part II)
  2. The 5th International Scientific Conference “Condensed Matter and Low Temperature Physics 2025” (CM&LTP 2025) Kharkiv, Ukraine, June 2–6, 2025
  3. Single-Cycle Growth of GaAs-Ge-GaAs Heterostructures from Bismuth Melt: Structural and Photoelectronic Properties
  4. Impact of Compaction and Thermal Annealing on the Low-Temperature Heat Capacity of Graphene Oxide
  5. Dimensional effects in the thermal expansion of carbon fiber reinforced plastic at low temperatures
  6. To the 75th Birthday of Professor Andrzej Jeżowski
  7. Низькотемпературні аспекти квантових технологій: стан і перспективи інноваційного розвитку
  8. Quantum effects in the kinetics of thermal expansion of C60 fullerite doped with 4He
  9. III International Advanced Research Workshop “Thermal Conductivity of Solid States at Low Temperatures” (online), Kharkiv, Ukraine October 25, 2023
  10. Kinetics of the thermal decomposition of thermally reduced graphene oxide treated with a pulsed high-frequency discharge in hydrogen atmosphere
  11. Is the C60 molecule truly highly hydrophobic?
  12. Short notes: Measurements on the heat capacity of thermal reduced graphene oxide down to 0.3 K
  13. Structural studies of epoxy resin with impurities of carbon nanostructures
  14. III International Advanced Study Conference “Condensed Matter and Low Temperature Physics 2023” (CM&LTP 2023) Kharkiv, Ukraine, June 5–9, 2023
  15. Low-temperature micromechanical properties of polyolephin/graphene oxide nanocomposites with low weight percent filler
  16. Experimental heat capacity of 1D chains of Xe atoms adsorbed in the grooves of c-SWCNTs bundles: Contributions of vibrations and spatial redistribution of atoms
  17. Influence of multi-walled carbon nanotubes on the thermal conductivity of hydroxyapatite
  18. Universal Heat Capacity Behavior in Plastic Mix with Graphene
  19. Hydrogen sorption by nanostructures at low temperatures (Review article)
  20. On polyamorphism in heterophase matter
  21. Quantum effects in the low-temperature thermal expansion of fullerite C60 doped with a 4He impurity
  22. The new approach for obtaining aqueous solutions of fullerene C60@{H2O}n by the cryogenic sublimation method
  23. II International Advanced Study Conference “Condensed Matter and Low Temperature Physics 2021” (CM&LTP 2021) Kharkiv, Ukraine, June 6-12, 2021
  24. Low-temperature sorption of hydrogen by porous carbon material containing palladium nanoclusters
  25. Calorimetric, NEXAFS and XPS studies of MWCNTs with low defectiveness
  26. Synthesis and micromechanical properties of graphene oxide-based polymer nanocomposites
  27. The impact of treating graphene oxide with a pulsed high-frequency discharge on the low-temperature sorption of hydrogen
  28. The low-temperature specific heat of thermal reduced graphene oxide
  29. In Celebration of Mikhail Alekseevich Strzhemechny’s 80th Birthday
  30. magnetic phenomena in dynamic torsion studies of fullerene
  31. Torsion studies of relaxation magnetic effects in C60 fullerite in magnetic field
  32. The effect of graphene oxide reduction temperature on the kinetics of low-temperature sorption of hydrogen
  33. 12th International Conference on Cryocrystals and Quantum Crystals (CC-2018) Wrocław, Poland, August 26–31, 2018
  34. Thermal expansion of organic superconductor α-(BEDT-TTF)2 NH4Hg(SCN)4
  35. Effect of Cold Plasma Treatment of Carbon Nanostructures on the Hydrogen Sorption
  36. Thermocatalytic pyrolysis of CO molecules. Structure and sorption characteristics of the carbon nanomaterial
  37. Sorption of hydrogen by silica aerogel at low-temperatures
  38. Thermal expansion of organic superconductor κ-(D4-BEDT-TTF)2Cu{N(CN)2}Br. Isotopic effect
  39. The effect of the thermal reduction on the kinetics of low-temperature 4He sorption and the structural characteristics of graphene oxide
  40. Recognition of a person named entity from the text written in a natural language
  41. Quantum effects in the sorption of hydrogen by mesoporous materials
  42. Phonon part of thermal expansion in anisotropic structures
  43. Peculiarities of thermal expansion of quasi-two-dimensional organic conductor κ-(BEDT–TTF)2Cu[N(CN)2]Cl
  44. Role of acoustic phonons in the negative thermal expansion of layered structures and nanotubes based on them
  45. Magnetic phases and relaxation effects in fullerite C60
  46. Physics of nanostructures at low temperatures
  47. Quantum effects in the sorption kinetics of4He by mesoporous materials
  48. The effect of the thermal reduction temperature on the structure and sorption capacity of reduced graphene oxide materials
  49. The effect of the temperature of graphene oxide reduction on low-temperature sorption of 4He
  50. Quantum effects in kinetics of low temperature gas sorption by carbon nanomaterials
  51. The low-temperature heat capacity of fullerite C60
  52. Effect ofγ-ray irradiation on the sorption of hydrogen by nanoporous carbon materials
  53. Low-temperature dynamics of matrix isolated methane molecules in fullerite C60: The heat capacity, isotope effects
  54. Tunneling effects in the kinetics of helium and hydrogen isotopes desorption from single-walled carbon nanotube bundles
  55. Kinetics of3He,4He, H2, D2, Ne, and N2sorption by bundles of single-walled carbon nanotubes. Quantum effects
  56. Sorption of 4He, H2, Ne, N2, CH4, and Kr impurities in graphene oxide at low temperatures. Quantum effects
  57. Hydrogen sorption by the bundles of single-wall carbon nanotubes, irradiated in various gas media
  58. Hydrogen storage capacity of carbon nanotubes γ - Irradiated in hydrogen and deuterium media
  59. Novel carbon materials: New tunneling systems (Review Article)
  60. The effect of glass transition in fullerite C60on Ar impurity diffusion
  61. Diffusion of H2 and Ne impurities in fullerite C60. Quantum effects
  62. The specific heat and the radial thermal expansion of bundles of single-walled carbon nanotubes
  63. Low-temperature heat capacity of fullerite C60 doped with deuteromethane
  64. Hydrogen sorption and radial thermal expansion of bundles of single-walled nanotubes irradiated by γ-rays in hydrogen atmosphere
  65. Kinetics of the sorption of 3He by C60 fullerite. The quantum diffusion of 3He and 4He in fullerite
  66. Quantum phenomena in the radial thermal expansion of bundles of single-walled carbon nanotubes doped with3He. A giant isotope effect
  67. A simple low-temperature adiabatic calorimeter for small samples
  68. The effect of O2impurities on the low-temperature radial thermal expansion of bundles of closed single-walled carbon nanotubes
  69. Kinetics of He4 gas sorption by fullerite C60. Quantum effects
  70. Quantum effects in the radial thermal expansion of bundles of single-walled carbon nanotubes doped with He4
  71. Low-temperature radial thermal expansion of single-walled carbon nanotube bundles saturated with nitrogen
  72. The effect of sorbed hydrogen on low-temperature radial thermal expansion of single-walled carbon nanotube bundles
  73. Radial thermal expansion of pure and Xe-saturated bundles of single-walled carbon nanotubes at low temperatures
  74. Thermal expansion of solutions of deuteromethane in fullerite C60 at low temperatures. Isotopic effect
  75. Radial thermal expansion of single-walled carbon nanotube bundles at low temperatures
  76. The effect of the noncentral impurity–matrix interaction upon the thermal expansion and polyamorphism of CO–C60 solid solutions at low temperatures
  77. Specific features of thermal expansion and polyamorphism in CH4–C60 solutions at low temperatures
  78. Influence of dissolved oxygen on the thermal expansion and polyamorphism of fullerite C60
  79. Low-temperature heat capacity of fullerite C60 doped with nitrogen
  80. Thermal expansion and polyamorphism of N2–C60 solutions
  81. On the polyamorphism of fullerite-based orientational glasses
  82. Thermal expansion of Kr–CH4 solid solutions at liquid-helium temperatures
  83. Low-temperature thermal expansion of pure and inert-gas-doped fullerite C60