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Physisorption kinetics in carbon nanotube bundles
JT Burde, MM Calbi - The Journal of Physical Chemistry C, 2007 - ACS Publications
The kinetics of gas uptake on different regions of carbon nanotube bundles is investigated
by means of a kinetic Monte Carlo scheme. A lattice-gas description is used to model the …
by means of a kinetic Monte Carlo scheme. A lattice-gas description is used to model the …
The heat capacity of nitrogen chain in grooves of single-walled carbon nanotube bundles
MI Bagatskii, MS Barabashko… - Low Temperature …, 2013 - pubs.aip.org
The heat capacity of bundles of closed-cap single-walled carbon nanotubes with one-
dimensional chains of nitrogen molecules adsorbed in the grooves has been first …
dimensional chains of nitrogen molecules adsorbed in the grooves has been first …
Experimental low-temperature heat capacity of one-dimensional xenon adsorbate chains in the grooves of carbon c-SWNT bundles
MI Bagatskii, VG Manzhelii, VV Sumarokov… - Low Temperature …, 2013 - pubs.aip.org
The experimental studies of the heat capacity of 1D chains of xenon atoms adsorbed in the
outer grooves of bundles of closed single-walled carbon nanotubes C Xe have been first …
outer grooves of bundles of closed single-walled carbon nanotubes C Xe have been first …
Thermal vacancies in one-dimensional Xe adsorbate chains in grooves of nanotube bundles
The specific heat CP of quasi-one-dimensional Xe adsorbate chains in grooves on the outer
surface of closed single-walled carbon nanotube bundles in the temperature interval of 2–55 …
surface of closed single-walled carbon nanotube bundles in the temperature interval of 2–55 …
Heat capacity of 1D molecular chains
The heat capacity of 1D chains of nitrogen and methane molecules (adsorbed in the outer
grooves of bundles of closed-cap single-walled carbon nanotubes) has been studied in the …
grooves of bundles of closed-cap single-walled carbon nanotubes) has been studied in the …
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
In the temperature range of 2− 75 K, the analysis and comparison were performed:(i)
experimental CP, Xe (T) and theoretical CV, Xe (T) heat capacity of 1D chains of xenon …
experimental CP, Xe (T) and theoretical CV, Xe (T) heat capacity of 1D chains of xenon …
Thermodynamics of low-dimensional adsorption in grooves, on the outer surface, and in interstitials of a closed-ended carbon nanotube bundle
TN Antsygina, II Poltavsky, KA Chishko - Physical Review B—Condensed …, 2006 - APS
The thermodynamics of an atomic deposit adsorbed in grooves, on the outer surface, and in
interstitials of a closed-end carbon nanobundle is investigated theoretically. The model …
interstitials of a closed-end carbon nanobundle is investigated theoretically. The model …
Square lattice hard-core bosons within the random phase approximation
TN Antsygina, MI Poltavskaya, II Poltavsky… - Physical Review B …, 2009 - APS
Using random phase approximation we build finite-temperature phase diagrams and
calculate thermodynamic functions of a square lattice hard-core boson model with nearest …
calculate thermodynamic functions of a square lattice hard-core boson model with nearest …
Exactly Solved Model for 4He Adsorption on Carbon Nanotube Bundles
TN Antsygina, II Poltavsky, KA Chishko - Journal of Low Temperature …, 2007 - Springer
The thermodynamics of atomic deposit adsorbed in grooves, on outer surface, and into
intertube channels of a closed-end carbon nanobundle has been investigated theoretically …
intertube channels of a closed-end carbon nanobundle has been investigated theoretically …
Heat capacity of xenon adsorbed on nanobundle grooves
KA Chishko, ES Sokolova - Low Temperature Physics, 2016 - pubs.aip.org
A model of a one-dimensional nonideal gas in an external transverse force field is used to
interpret the experimentally observed thermodynamic properties of xenon deposited in …
interpret the experimentally observed thermodynamic properties of xenon deposited in …