Material Science
Carbon Nanotube
100%
MXene
55%
Graphene
45%
Monolayers
34%
Titanium Carbide
28%
Chemical Vapor Deposition
24%
Film
22%
Density
22%
Capacitance
20%
Lithium Ion Battery
19%
Transition Metal Dichalcogenide
17%
Layered Double Hydroxides
16%
Heterojunction
16%
Battery (Electrochemical Energy Engineering)
15%
Nanoparticle
15%
Nanocrystalline Material
15%
Lithium Ion
14%
Supercapacitors
13%
Nanocomposites
13%
Lithium-Sulfur Battery
10%
Anode
10%
Transition Metal Carbide
9%
Cathode
9%
Oxidation Reaction
8%
Two-Dimensional Material
8%
Lithium
8%
Carbon Dioxide
7%
Nanosheet
6%
Anode Material
6%
Nitride Compound
5%
Electrical Conductivity
5%
Conductive Film
5%
Keyphrases
MXene-based Composites
48%
Carbon Nanotubes
36%
Graphene
30%
Multi-walled Carbon Nanotubes (MWCNTs)
29%
Molybdenite
20%
Ti3C2Tx
19%
Layered Double Hydroxide
17%
Vertically Aligned Carbon Nanotube Arrays
16%
Li-ion Battery
15%
Carbon Nanotube Arrays
15%
Aligned Carbon Nanotubes
14%
Li-ion
13%
Fluidized Bed Reactor
12%
Transition Metal Dichalcogenides
12%
Two-dimensional Titanium Carbide
11%
Flakes
11%
Lithium-sulfur Batteries
11%
Ti3C2Tx MXene
10%
Carbon Nanotube Hybrids
10%
Supercapacitor
10%
Heterostructure
9%
Double Helix
9%
Monolayer MoS2
9%
High Capacity
8%
Two Dimensional
8%
Lithium-ion Battery
8%
Vermiculite
8%
Energy Storage Devices
8%
MXene Flakes
8%
Chemical Vapor Deposition
8%
MoS2 Monolayer
8%
Double-walled Carbon Nanotubes (DWCNTs)
6%
Nitrogen Doping
6%
Nanocarbon
6%
Capacitance
6%
Electrode Materials
6%
Anode Material
6%
Nitrogen-doped Carbon Nanotubes
6%
Rutile
6%
Titanium Carbide MXene
6%
Catalytic Growth
6%
Sulfur
6%
High Volumetric Capacitance
6%
High Performance
6%
Oxygen Reduction Reaction
5%
Vertically Aligned
5%
Mass Production
5%
Delamination
5%
Double Layer
5%
Recent Advances
5%