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INIS
hydrogen storage
77%
carbon
75%
graphene
66%
hydrogen
58%
performance
56%
adsorption
55%
porous materials
50%
density functional method
36%
doped materials
36%
biomass
33%
lithium
27%
defects
25%
energy
23%
stability
20%
metals
18%
potassium hydroxides
16%
graphite
16%
hydrogels
16%
supercapacitors
16%
hybrids
16%
lignin
16%
zinc ions
16%
purity
16%
monitoring
16%
methane
16%
sensors
16%
molecules
16%
design
16%
boron
16%
layers
16%
capacity
14%
applications
13%
desorption
13%
impurities
12%
specific surface area
11%
precursor
11%
nitrogen
11%
vacancies
11%
configuration
8%
fuel cells
8%
energy systems
8%
porosity
8%
powders
8%
storage
8%
atmospheres
7%
adhesives
6%
cellulose
6%
graphitization
6%
electrolytes
6%
acetonitrile
6%
comparative evaluations
6%
engineering
5%
charges
5%
simulation
5%
molecular dynamics method
5%
reviews
5%
Keyphrases
Hydrogen Storage
33%
Theoretically Informed
33%
Biomass Materials
33%
Porous Carbon Materials
33%
High Performance
33%
Graphene
25%
Impurities
16%
Conductometric
16%
Graphene Powder
16%
Hydrogen Purity
16%
Decorated Graphene
16%
Hydrogen Coverage
16%
Boron-doped
16%
Reversible Hydrogen Storage
16%
Adsorption Energy
16%
H2 Molecule
16%
Defect Doping
16%
Desorption
16%
Lithium
16%
Carbon Vacancy
16%
Graphene-based
16%
Graphene Layer
16%
Hydrogen Storage Technologies
16%
Dopant
16%
Clean Energy System
11%
Tunable Porosity
11%
Efficient Hydrogen Storage
11%
Biomass Porous Carbon
11%
Fuel Cell Technology
11%
Energy Fuel
11%
Carbon Materials
11%
Chemical Stability
11%
High Specific Surface Area
11%
Various Applications
11%
Sustainable Precursor
11%
Highly Efficient
11%
Lithium Decoration
8%
Hydrogen Fuel
8%
Hydrogen Energy Technologies
8%
First-principles Calculations
8%
Global Energy
8%
Low Temperature
8%
Sensor-based
8%
Energy Challenge
8%
Few-layer Graphene
8%
Metal Oxide Sensors
8%
Conductometric Gas Sensors
8%
ISO 14687
8%
Trace Impurities
8%
H2 Atmosphere
8%
Energy Sources
8%
Cost-effective Sensor
8%
Methane
8%
Proton Exchange Membrane Fuel Cell (PEMFC)
8%
Charge Density Analysis
8%
Coverage Increase
8%
Major Barriers
8%
Anchoring Strength
8%
Adsorption Energetics
8%
Electrostatic Polarization
8%
Reversible Storage
8%
Molecular Hydrogen
8%
Li+ Adsorption
8%
Moderate Adsorption
8%
Design Relationships
8%
Projected Density of States
8%
Hydrogen Storage Medium
8%
Hydrogen Storage Applications
8%
Desorption Temperature
8%
Optimal Behavior
8%
Density Functional Theory (DFT) Calculations
8%
Sustainable Hydrogen Production
8%
Hydrogen Adsorption
8%
Boron Doping
8%
Charge Redistribution
8%
Hydrogen Uptake
8%
Design Principles
8%
Charge Density
8%
Elevated Pressure
8%
Boron
8%
Atmospheric Pressure
8%
Pure Graphene
8%
Eco-friendly Energy
8%
Structural Stability
8%
Quantitative Design
8%
Adsorption Strength
8%
Structural Configuration
8%
Density of States
8%
Adsorption
8%
Adsorption Thermodynamics
8%
Physisorption
8%
Electron-deficient
8%
Competitive Adsorption
8%
Collaborative Research
5%
Lignin-derived Carbon
5%
Zinc-ion Hybrid Capacitors
5%
Heteroatom Doping Engineering
5%
Desorption Dynamics
5%
Material Science
Hydrogen
100%
Graphene
66%
Porous Carbon
50%
Density
40%
Lithium
26%
Boron
16%
Lignin
16%
Hydrogel
16%
Zinc Ion
16%
Hybrid Supercapacitor
16%
Desorption
11%
Protective Atmosphere
7%