Material Science
Graphene
100%
Electronic Property
65%
Thermoelectrics
62%
Monolayer
59%
Hydride
58%
Nanoribbon
56%
Density
54%
Transition Metal
49%
Thermal Conductivity
47%
Magnesium
42%
Schottky Barrier
37%
Magnetic Property
33%
Nanoparticle
33%
Dehydrogenation
30%
Desorption
29%
Metal Hydride
26%
Catalysis
25%
Composite Material
23%
Surface (Surface Science)
21%
Ferromagnetism
20%
Carrier Concentration
18%
Energy Level
18%
Magnetism
18%
Electrical Conductivity
17%
Nanosheet
17%
Nitrogen Dioxide
17%
Thermoelectric Materials
16%
Nanocomposite
16%
Catalyst Activity
16%
MXene
15%
Transition Metal Dichalcogenide
13%
Solid Solution
12%
Aerogel
12%
Titanium Carbide
12%
Oxygen Vacancy
12%
Self Assembly
12%
Electron Transfer
11%
Heterojunction
10%
Enzymatic Hydrolysis
9%
Tensile Strain
9%
Cobalt
9%
Contact Resistance
9%
Grain Boundary
9%
Boron Nitride
8%
Metal-Organic Framework
8%
Carrier Mobility
8%
Crystal Structure
8%
Film
7%
Interface Property
7%
Functional Surface
7%
Chemical Engineering
Dehydrogenation
50%
Graphene
38%
Desorption
34%
Nanosheet
25%
Thermal Conductivity
25%
Transition Metal
19%
Calcination
12%
Nickel Nanoparticle
12%
Nanoparticle
12%
Hydrogenation
10%
Titanium Dioxide
9%
Joule Heating
9%
Chemical Kinetics Characteristics
7%
Desorption Temperature
6%
Carbon Aerogel
6%
Film
6%
Nanowire
6%
Gas-solid Reactions
6%
Functional Group
6%
Polydimethylsiloxane
6%
Nanostructure
6%
Aerogel
6%
Composite Catalyst
6%
Large Specific Area
6%
Hydrogen Yield
6%
Oxygen Vacancy Engineering
6%
Diffusion Barrier
6%
Chemistry
Hydrogen
18%
Transport Property
18%
Thermoelectricity
18%
Thermal Conductivity
14%
Magnesium
12%
Phonon
9%
Transition Metal
9%
Schottky Contact
8%
Electric Field
8%
Sulfide
6%
Ion Exchange
6%
Tin
6%
Electronegativity
6%
Molybdenum Disulfide
6%
Energy Storage
6%
Macro Porosity
6%
Nanomaterial
6%
Protective
6%
Dual-atom Catalysts
6%
Density of State
6%
Magnetism
6%
Environmental Friendliness
5%