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INIS
adsorption
39%
applications
68%
atoms
11%
bismuth ions
6%
boron
19%
capacity
20%
carbon
17%
carbon 11
6%
carbon 22
6%
carbon dioxide
19%
cathodes
39%
ceramics
19%
charges
11%
chlorides
8%
comparative evaluations
23%
concentration
11%
configuration
6%
control
19%
damage
10%
defects
42%
density
9%
density functional method
35%
deposition
19%
depth
13%
design
13%
desorption
9%
diffusion
11%
doped materials
42%
efficiency
15%
electrochemistry
17%
electrophoresis
19%
energy
20%
engineering
13%
eutectics
39%
fibers
6%
films
15%
foams
19%
fuel cells
39%
ghz range
6%
graphene
45%
heat transfer
7%
heavy ions
19%
hydration
16%
hydrogen
32%
hydrogen storage
32%
hydroxides
10%
increasing
11%
interactions
6%
interfaces
19%
ion exchange
80%
ionic conductivity
12%
ions
32%
irradiation
19%
layers
27%
levels
16%
lithium
29%
lithium ion batteries
23%
membranes
100%
metals
6%
mixtures
19%
mobility
19%
modeling
19%
modifications
9%
molecular dynamics method
35%
molecules
13%
morphology
11%
nanoparticles
19%
nitrogen
6%
oils
22%
optimization
8%
oxides
6%
performance
32%
phonons
11%
point defects
7%
poly(vinylidene fluoride)
11%
polyacrylonitrile
19%
pva
19%
radiations
19%
recovery
19%
reduction
6%
retention
8%
reviews
19%
silicon carbides
19%
simulation
37%
solutions
6%
solvents
39%
spectroscopy
10%
stability
69%
stopping power
13%
strains
6%
surfaces
45%
surfactants
10%
swelling
13%
tolerance
19%
tracks
19%
transport
32%
tungsten
14%
vacancies
10%
waste water
6%
water
8%
Keyphrases
Acoustic Mode
9%
Adsorption
9%
Adsorption Energetics
9%
Adsorption Energy
9%
Adsorption Strength
9%
Adsorption Thermodynamics
9%
Amorphous Phase
9%
Amorphous/nanocrystalline
9%
Anchoring Strength
9%
Anion Exchange Membrane
19%
Atmospheric Pressure
9%
Bi Ions
9%
Boron
9%
Boron Doping
9%
Boron-doped
19%
Brillouin Spectroscopy
9%
Carbon Vacancy
19%
Charge Density
9%
Charge Density Analysis
9%
Charge Redistribution
9%
Coverage Increase
9%
Cross-linked
19%
Decorated Graphene
19%
Defect Doping
19%
Defect-induced
11%
Degree of Quaternization
9%
Densification Mechanism
9%
Density Functional Theory (DFT) Calculations
9%
Density of States
9%
Depth-dependent
9%
Depth-resolved
9%
Design Principles
9%
Design Relationships
9%
Desorption
19%
Desorption Temperature
9%
Dopant
19%
Electron-deficient
9%
Electronic Stopping Power
19%
Electrostatic Polarization
9%
Elevated Pressure
9%
Functional Group Modification
6%
Grafting Density
19%
Graphene
19%
Graphene Layer
19%
Graphene Oxide Membrane
13%
H2 Molecule
9%
High Fluence
9%
High-nickel Cathode Material
19%
Hybrid Materials
6%
Hydrogen Adsorption
9%
Hydrogen Coverage
19%
Hydrogen Storage Applications
9%
Hydrogen Storage Medium
9%
Hydrogen Storage Technologies
19%
Hydrogen Uptake
9%
Industrial Separation
6%
Interfacial Thermal Conductance
19%
Ion Track
9%
Li+ Adsorption
9%
Lithium
19%
Lithium Decoration
9%
Major Barriers
9%
Mechanism-based
9%
MgAl2O4 Spinel
9%
Micrometer Scale
9%
Moderate Adsorption
9%
Molecular Dynamics Simulation Study
19%
Molecular Hydrogen
9%
Nanoamorphous
9%
Nanofibrous
19%
Nanoslit
19%
Nuclear Ceramic
9%
Oil Spill Cleanup
6%
Oil/water Separation
13%
Optical Reflectometry
9%
Optimal Behavior
9%
Penetration Efficiency
13%
Phonons
11%
Photoelastic
19%
Physisorption
9%
Polyacrylonitrile
19%
Projected Density of States
9%
Quantitative Design
9%
Quaternized chitosan
19%
Radiation Damage
9%
Radiation Tolerance
19%
Region Following
9%
Reversible Hydrogen Storage
19%
Reversible Storage
9%
Self-healing
9%
Steric Interactions
6%
Strain Profile
9%
Structural Configuration
9%
Structural Stability
9%
Surface Grafting
19%
Surface Patterning
6%
Swift Heavy Ion Irradiation
9%
Swift Heavy Ions
19%
Track Morphology
9%
Wastewater Treatment
13%
Material Science
Acoustics
19%
Activation Energy
9%
Biopolymer
19%
Bismuth Ion
19%
Boron
19%
Calcination
6%
Carbon Dioxide
19%
Cathode
32%
Cathode Material
24%
Chloride
11%
Composite Material
6%
Composite Membrane
6%
Coprecipitation
6%
Deep Eutectic Solvent
39%
Defect Engineering
12%
Density
71%
Desorption
8%
Dielectric Spectroscopy
6%
Diffusivity
19%
Doping (Additives)
5%
Electrophoretic Technology
19%
Film
21%
Graphene
39%
Graphene Oxide
13%
High Energy Density
6%
Hybrid Material
6%
Hydrogen
39%
Ion Bombardment
19%
Ion Exchange
80%
Ionic Conductivity
19%
Lithium
30%
Lithium Ion
6%
Lithium Ion Battery
24%
Nanocomposite
6%
Nanocrystalline
19%
Nanoparticle
19%
Point Defect
19%
Poly Vinyl Alcohol
19%
Polyacrylonitrile
19%
Polyacrylonitrile Fiber
6%
Radiation Damage
19%
Scanning Electron Microscopy
6%
Self-Healing
19%
Spin Coating
6%
Surface Active Agent
19%
Surface Functionalization
6%
Surface Modification
13%
Surface Patterning
6%
Thermal Management
9%
Tungsten
19%
Ultimate Tensile Strength
6%
X-Ray Diffraction
6%