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Enthalpy and entropy effects in hydrogen adsorption on carbon nanotubes
Irena Efremenko
*
,
Moshe Sheintuch
*
Corresponding author for this work
Research output
:
Contribution to journal
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Article
›
peer-review
32
Scopus citations
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Engineering & Materials Science
Carbon nanotubes
100%
Enthalpy
96%
Adsorption
92%
Entropy
79%
Hydrogen
75%
Graphite
46%
Molecules
46%
Molecular mechanics
37%
Density functional theory
35%
Nanotubes
30%
Isotherms
28%
Thermodynamics
20%
Temperature
18%
Physics & Astronomy
enthalpy
84%
carbon nanotubes
81%
adsorption
72%
entropy
68%
hydrogen
58%
graphite
40%
molecules
25%
isotherms
23%
nanotubes
22%
density functional theory
18%
thermodynamics
16%
room temperature
13%
interactions
9%
energy
6%
Chemical Compounds
Entropy
77%
Enthalpy
74%
Carbon Nanotube
68%
Hydrogen
47%
Adsorption
46%
Graphite
34%
Molecular Mechanic
23%
Single Walled Nanotube
21%
Ab Initio Calculation
20%
Nanotube
18%
Isotherm
18%
Molecule
16%
Surface
15%
Density Functional Theory
14%
Thermodynamics
14%
Ambient Reaction Temperature
13%
Energy
11%