All Stories

  1. Using a digital library instead of a traditional database
  2. Graphene for solar energy
  3. Osmium: Melting curve and matching of high-temperature data
  4. Nanocarbon materials: Physicochemical and exploitation properties, synthesis methods, and enegretic applications
  5. Biased diffusion in tubes of alternating diameter: Analytical treatment in the case of strong bias
  6. Diffusion in a tube consisting of alternating wide and narrow sections
  7. A digital library instead of a traditional database for nanotechnologies: An attempt to use the ABCD system
  8. Diffusion in quasi-one-dimensional periodic structures
  9. Effective diffusion coefficient of a Brownian particle in a periodically expanded conical tube
  10. Asymmetry of the shape of surroundings as a mechanism for generating directed motion
  11. Publishing scientific data as linked open data
  12. The systematization of sources and data on nanotechnologies
  13. Directed transport of a Brownian particle in a periodically tapered tube
  14. Nanostructures Properties Data System. Critical Evaluation Methodology
  15. Thermophysical properties of nanoobjects: Data classification and validity evaluation
  16. Integration of databases on substance properties: Approaches and technologies
  17. Force-dependent mobility and entropic rectification in tubes of periodically varying geometry
  18. Diffusion in the presence of cylindrical obstacles arranged in a square lattice analyzed with generalized Fick-Jacobs equation
  19. Properties of Nanostructures: Data Acquisition, Categorization, and Evaluation
  20. Communication: Drift velocity of Brownian particle in a periodically tapered tube induced by a time-periodic force with zero mean: Dependence on the force period
  21. Driven Diffusion in a Periodically Compartmentalized Tube: Homogeneity versus Intermittency of Particle Motion
  22. Communication: Turnover behavior of effective mobility in a tube with periodic entropy potential
  23. Systematization of data on the physical and chemical properties and application of carbon nanostructures
  24. Communications: Drift and diffusion in a tube of periodically varying diameter. Driving force induced intermittency
  25. Diffusion in a tube of alternating diameter
  26. Diffusion in a tube of alternating diameter
  27. One-dimensional description of diffusion in a tube of abruptly changing diameter: Boundary homogenization based approach
  28. Escape from cavity through narrow tunnel
  29. Diffusion in quasi-one-dimensional structures with a periodic sharp narrowing of the cross section
  30. Time-dependent diffusion in tubes with periodic partitions
  31. The role of metadata in the creation and application of information resources on the properties of substances and materials
  32. Diffusion in a porous medium with dead ends: An analysis by methods of the theory of diffusion-controlled reactions
  33. Particle size effect on diffusion in tubes with dead ends: Nonmonotonic size dependence of effective diffusion constant
  34. Relaxation and fluctuations of the number of particles in a membrane channel at arbitrary particle-channel interaction
  35. The logical structure of physicochemical data: Problems of numerical data standardization and exchange
  36. Transient diffusion in a tube with dead ends
  37. Escape from a cavity through a small window: Turnover of the rate as a function of friction constant
  38. The trapping of diffusing particles by absorbing surface centers
  39. The kinetics of overcoming the “entropy barrier”
  40. Nonideality of polymer solutions in the pore and concentration-dependent partitioning
  41. Homogenization of boundary conditions on surfaces randomly covered by patches of different sizes and shapes
  42. Boundary homogenization for trapping by patchy surfaces
  43. Effective diffusivity in periodic porous materials
  44. Conductivity and microviscosity of electrolyte solutions containing polyethylene glycols
  45. Diffusivity in periodic arrays of spherical cavities
  46. Kinetics of escape through a small hole
  47. Smoluchowski equation with a sink term: Analytical solutions for the rate constant and their numerical test
  48. Reversible chemical reactions in slowly relaxing environments: Kramers' turnover of the rate constant
  49. Migration of a finite size ligand through a fluctuating bottleneck
  50. Activated rate processes in many dimensions: energy diffusion with slow adjustment of a nonreactive mode
  51. Kramers theory of chemical reactions in a slowly adjusting environment
  52. Thermally activated traversal of an energy barrier of arbitrary shape
  53. Numerical test of Kramers reaction rate theory in two dimensions
  54. An analytical study of the Berezhkovskii-Pollak-Zitserman theory of rate processes in the memory-suppression region
  55. Direction of the nucleation current through the saddle point in the binary nucleation theory and the saddle point avoidance
  56. Nonequilibrium solvation in chemical reactions. III. Applications of the theory
  57. Multi-dimensional Kramers theory of the reaction rate with highly anisotropic friction. Energy diffusion for the fast coordinate versus overdamped regime for the slow coordinate
  58. Multidimensional Theory of Homogeneous Boiling of Pure Liquids
  59. Multidimensional activated rate processes with slowly relaxing mode
  60. Activated rate processes: Generalization of the Kramers–Grote–Hynes and Langer theories
  61. Non-equilibrium solvation in chemical reactions. II. Rate constant
  62. Generalization of the Kramers-Langer theory: decay of the metastable state in the case of strongly anisotropic friction
  63. Activated rate processes in the multidimensional case. Consideration of recrossings in the multidimensional Kramers problem with anisotropic friction
  64. Comment on: Diffusion theory of multidimensional activated rate processes: The role of anisotropy
  65. The multicomponent nucleation theory with saddle point avoidance
  66. Solvent slow-mode influence on chemical reaction dynamics: a multidimensional Kramers-theory treatment
  67. Activated rate processes in a multidimensional case. A new solution of the Kramers problem
  68. Anomalous regime for decay of the metastable state: An extension of multidimensional Kramers theory
  69. Accounting for memory effects in calculating the rate constant of a chemical reaction
  70. The covolume and equation of state of high-temperature real gases
  71. Thermodynamic calculations of combustion products at high pressures
  72. Molecular dynamics simulation of the transport properties of liquid sodium and potassium
  73. Diffusion in a potential field: Path-integral approach
  74. Non-stationary approach to the diffusion theory of chemical reactions
  75. A path-integral solution for unstable systems
  76. On the calculation of quantum partition functions and virial coefficients by path integration
  77. Local harmonic approximation for multidimentional density matrix
  78. On the calculation of the partition function of an anharmonic oscillator
  79. On Heisenberg exchange of high spins
  80. On external dipolar relaxation in a two-spin system