Material Science
Lubrication
100%
Ionic Liquid
52%
Graphene Oxide
51%
Graphene
45%
Film
37%
Lithium
32%
Scanning Electron Microscopy
32%
Tribology
31%
Coefficient of Friction
28%
Molybdenum
27%
Wear Property
27%
Polyethylene Glycol
26%
Lubricant Additive
20%
Two-Dimensional Material
18%
Tribological Performance
17%
Oxide Compound
17%
Wear Resistance
15%
Nanosheet
15%
Electrical Conductivity
15%
Nanoadditives
13%
Carbon Nanotube
13%
Energy-Dispersive X-Ray Spectroscopy
10%
Contact Resistance
10%
Sliding Friction
9%
Powder
8%
Density
8%
Electrical Resistivity
7%
Solution
7%
X-Ray Diffraction
7%
Silicon Nitride
7%
Thin Films
6%
Titanium Dioxide
6%
Polyol
6%
Aluminum
6%
X-Ray Photoelectron Spectroscopy
6%
Metal Interface
6%
Lanthanum
6%
Quantum Dot
6%
Titanium Carbide
6%
Synthetic Lubricant
6%
Corrosion
6%
MXene
6%
Antioxidant Additive
6%
Cerium
6%
Polyimide
6%
Metallurgy
6%
Nanocomposites
6%
Diamond-Like Carbon Coating
6%
Pore Size
6%
Magnesium
6%
Engineering
Macroscale
30%
Graphene Oxide
13%
External Electric Field
13%
Coefficient of Friction
13%
Two-Dimensional Materials
10%
Adsorption
9%
Steel Surface
8%
Friction Coefficient
7%
Nanosheet
6%
Antiwear
6%
Scanning Electron Microscope
6%
Salt Concentration
6%
Wear Property
6%
Electrical Conductivity
6%
Situ Formation
6%
Thin Films
6%
Poly-Alpha-Olefins
6%
Sliding Condition
6%
Ceramic Interface
6%
Liquid Molecule
6%
MXene
6%
Energy Engineering
6%
Synergy Effect
6%
Liquid Film Thickness
6%
Thickness Distribution
6%
Liquid Films
6%
Constriction Resistance
6%
Extreme Pressure
6%
Contact Zone
6%