Keyphrases
Lithium-ion Battery
84%
Composite Fibers
75%
Anode Material
54%
Centrifugal Spinning
47%
Binder-free Anode
38%
Carbon Fiber
32%
TiO2@C
25%
Carbon Fiber Anode
24%
Composite Nanofibers
24%
Carbon-doped TiO2
24%
Carbon Composite
24%
Iron Oxide
22%
Polyvinylpyrrolidone
21%
Ternary Composite
20%
Fe3O4@TiO2
18%
Squamous Cell Carcinoma (SqCC)
18%
Surface Charge Engineering
18%
Inflammatory Chemokines
18%
Polyacrylonitrile Precursor Fiber
18%
Chondroitin Sulfate
18%
Carbon Combustion Synthesis
18%
Graphene Fiber
18%
Epidermolysis Bullosa
18%
Graphene
18%
In Situ Production
18%
Hybrid Structure
18%
Sodium-ion Batteries
18%
Janus-like
18%
Cobalt Ferrite
18%
Reaction Conditions
18%
Field-effect Transistors
18%
Magnetoelectric
18%
Spinning Techniques
18%
Barium Titanate
18%
Hollow Fiber
18%
Multi-walled
18%
TiS2
18%
Lithium-ion
18%
Triboelectric Nanogenerator
18%
Ion-ion
18%
Polymer-based
18%
Black Arsenic
18%
Green Energy Production
18%
Composite Nanofiber Membrane
18%
Co3O4
18%
Electrolyte Additive
18%
Succinonitrile
18%
Thermal Treatment
16%
Organic Ionic Liquid
15%
Ionic Liquid Electrolyte
15%
Nanogenerator
13%
Triboelectricity
13%
Carbonization
13%
Charge Capacity
12%
Nanofibers
12%
Aqueous Solution
10%
Electrochemical Performance
10%
Galvanostatic Charge-discharge
10%
Improved Electrochemical Performance
9%
Rate Performance
9%
Red Phosphorus
9%
Thin Film Growth Process
9%
Arsenic Phosphorus
9%
Reaction Duration
9%
Combustion Synthesis
9%
Graphene Sheets
9%
Silica
9%
Mass Ratio
9%
Thin Film Growth
9%
Electron Backscatter Diffraction
9%
Raman Spectroscopy
9%
Air Gap
9%
CoFe2O4
9%
Iodide
9%
Field-effect Hole Mobility
9%
Transmission Microscopy
9%
Single Crystal
9%
Transport Method
9%
On-off Ratio
9%
Growth Mechanism
9%
Threshold Voltage
9%
Diffraction
9%
X-ray Photoelectron Spectroscopy
9%
Ampule
9%
Maximum Temperature
9%
Tin(IV)
9%
Growth Techniques
9%
Structure Composition
9%
Film Growth
9%
Exfoliating
9%
Polyethylene
9%
Elemental Composition
9%
Valuable Insight
9%
Ionic Conductivity
9%
Current Density
8%
Composite Anode
8%
Anodes for Lithium-ion Batteries
7%
Flexible Carbon Fiber
7%
Annealing
7%
Heat Treatment
7%
Precursor Fiber
7%
LiCoO2 Cathode
6%
SnO2
6%
First Cycle
6%
Specific Charge
6%
Charge-discharge Rate
6%
Cyclic Voltammetry
6%
Fiber Yield
6%
Spinning Process
6%
Sulfite
6%
High Surface Area
6%
Spun Fiber
6%
Composite Carbon Nanofibers
6%
Processing Methods
6%
Surface-to-volume Ratio
6%
Electrospinning
6%
Formation Structure
6%
Fiber Structure
6%
Metals Transition
6%
Electrode Materials
6%
Fiber Morphology
6%
Low Productivity
6%
Monocyte Chemoattractant protein-1 (MCP-1)
6%
Transition Metal Oxides
6%
Formation Morphology
6%
Safety Hazards
6%
Fiber Formation
6%
Separator Materials
6%
Thermogravimetric Analysis
5%
Polyacrylonitrile Fiber
5%
Polyacrylonitrile
5%
Precursor Solution
5%
Composite Electrode
5%
Co3O4 Nanoparticles
5%
Material Science
Composite Material
100%
Lithium Ion Battery
87%
Anode
82%
Anode Material
54%
Carbon Fiber
46%
Titanium Dioxide
36%
Lithium Ion
20%
Nanofiber
20%
Combustion Synthesis
18%
Electrolyte Additive
18%
Field Effect Transistors
18%
Graphene
18%
Polycarbonate
18%
Barium Titanate
18%
Surface Charge
18%
Sodium Ion Battery
18%
Polyethylene
18%
Electronic Circuit
18%
Cobalt(II,III) Oxide
18%
Thin Films
18%
Arsenic
18%
Cobalt
18%
Ionic Liquid
18%
Iron Oxide
18%
Nanoparticle
13%
Tin
12%
Thin Film Growth
12%
Ionic Conductivity
11%
Transmission Electron Microscopy
11%
X-Ray Diffraction
11%
Nanocomposite
10%
Density
10%
Activation Energy
9%
Mechanical Stability
9%
Multiferroic Material
9%
Cathode
9%
X Ray Diffraction Analysis
9%
Hematite
9%
Electron Microscopy
9%
Heat Treatment
7%
Scanning Electron Microscopy
6%
Electron Backscatter Diffraction
6%
Film Growth
6%
Separator Material
6%
Transition Metal
6%
Hole Mobility
6%
Electrospinning
6%
Transition Metal Oxide
6%
Alloying
6%
Raman Spectroscopy
6%
Photoemission Spectroscopy
6%
Crystal Structure
6%
Single Crystal
6%
Surface (Surface Science)
5%
Thermogravimetric Analysis
5%