INIS
molecular dynamics method
100%
graphene
76%
thermal conductivity
71%
simulation
70%
nanostructures
57%
phonons
51%
superlattices
45%
heat transfer
41%
length
30%
chains
29%
interfaces
23%
values
23%
hybrids
20%
equilibrium
18%
correlations
17%
transport
17%
grain boundaries
14%
applications
14%
range
14%
wave propagation
13%
temperature gradients
12%
configuration
12%
carbon nitrides
12%
thermal properties
11%
asymmetry
11%
hydrogenation
10%
heat
10%
hydrogen
10%
one-dimensional calculations
10%
sheets
10%
strains
9%
geometry
9%
boron nitrides
9%
nanowires
9%
silicon carbides
9%
carbon nanotubes
9%
friction factor
9%
distribution
9%
deoxyribonucleic acid
9%
dna
9%
melting
9%
mechanical properties
9%
viscosity
9%
quantum mechanics
9%
molecules
8%
nanomaterials
8%
carbon
8%
kapitza resistance
8%
size
7%
comparative evaluations
6%
Keyphrases
Molecular Dynamics Simulation
42%
Thermal Rectification
36%
Superlattice
31%
Nanoribbon
29%
Thermal Conductivity
26%
Heat Transfer
22%
Molecular Dynamics Study
20%
Phonons
20%
Hybrid Graphene
19%
Graphene Superlattice
18%
Graphene
18%
Two Dimensional
18%
Thermal Properties
12%
Intrinsic Thermal Conductivity
11%
Nanosheets
10%
Graphene-like Carbon Nitride
10%
Temperature Difference
10%
Phonon Heat Transport
10%
Grain Boundary
9%
Nanostructures
9%
Biphenylene
9%
Hexagonal Boron Nitride (h-BN)
9%
Ge Nanowires
9%
Computational Study
9%
Hetero
9%
Hydrogenated Graphene
9%
Nanocrystalline 3C-SiC
9%
Dynamic Friction Coefficient
9%
High Friction
9%
Vertically Aligned Carbon Nanotubes (VACNTs)
9%
Geometry Effect
9%
Interface Geometry
9%
Carbon Nanotubes
9%
Phagraphene
9%
Friction Coefficient
9%
Entropic Analysis
9%
Thermal Transport
9%
Spatially Resolved
9%
Biphenylene Network
9%
Short-range Correlations
9%
Phonon Thermal Conductivity
9%
Melting Transition
9%
Edge Configuration
9%
Phosphorene Nanoribbon
9%
Minimum Thermal Conductivity
8%
Non-equilibrium Molecular Dynamics Simulation
7%
Kapitza Resistance
7%
Non-equilibrium Molecular Dynamics
6%
Molecular Dynamics Approach
6%
Localization-delocalization Transition
6%
Engineering
Graphene
64%
Computer Simulation
52%
Thermal Conductivity
38%
Rectification
36%
Superlattice
27%
Two Dimensional
19%
Heat Transport
18%
Grain Boundary
14%
Nonequilibrium
11%
Nitride
10%
Nanosheet
9%
Nanowires
9%
Coefficient of Friction
9%
Friction Coefficient
9%
Carbon Nanotube
9%
Nanocrystalline
9%
Nanoscale
9%
Structural Behavior
9%
Twist Angle
9%
Temperature Gradient
7%
Melting Temperature
6%