Keyphrases
Lithium-ion Cell
100%
Positive Electrode
91%
Negative Electrode
80%
Polyiodides
80%
In Situ Formation
68%
Co-N-C
68%
Lithium Iodide
68%
Design Considerations
68%
Cell Design
68%
Charging Process
57%
In Situ
57%
Current Collector
54%
Rechargeable Zn-air Battery
51%
Electric Vehicle
41%
Proton-neutron Pairing
41%
Electrode Porosity
36%
DEC1
34%
All-solid-state Battery
34%
Cellular Structure
34%
Complex Cell
34%
Battery Cell
34%
Solid Electrolyte Interface
34%
Solid Electrolyte Interphase
34%
Reversible Hydrogen Electrode
34%
High-capacity Electrodes
34%
Fundamental Challenges
34%
High Cost
34%
Metal-organic Frameworks (MOFs)
34%
Graphene
34%
Lithium-iodine Batteries
34%
Physical Properties
34%
Carbon Nanotubes
34%
Half-cell
34%
Electrodes Pair
34%
Cell Characterization
34%
Manufacturing Tolerances
34%
Fast Charging
34%
Commercially Available
34%
Porosity
34%
Charge Transport
34%
Solid State
34%
Low-cost Manufacturing
34%
Layer-by-layer Self-assembly
34%
Oxygen Electrocatalyst
34%
Metal Fluoride
34%
Co Metal
34%
Functionalized Carbon
34%
Reversible Conversion
34%
Microbatteries
34%
Bifunctional Electrocatalyst
34%
Engineering
Positive Electrode
93%
Design Consideration
68%
Cell Design
58%
Lithium-Ion Cell
52%
Electric Vehicle
45%
Negative Electrode
44%
Half Cell
34%
Energy Storage
34%
Manufacturing Tolerance
34%
Nanocomposite
34%
Bifunctional Electrocatalysts
34%
Constant Voltage
28%
Active Material
25%
Fits and Tolerances
20%
Microscale
17%
Cycle Life
17%
Current Collector
17%
Minute (Time)
17%
Electrical Impedance
17%
Limiting Factor
17%
Low Discharge Rate
17%
Nameplate Capacity
17%
Cell Group
17%
Energy Density
17%
Department of Energy
17%
Spectral Feature
17%
Transfer Process
17%
Electrode Coating
13%
Polarization Curve
11%
Internal Combustion Engine
11%
Cell Performance
11%
Periodic Time
11%
State of Charge
11%
Design Parameter
11%
Zinc-Air Battery
8%
Calendering
6%
Manufacturing Process
6%
Cell Volume
6%
Design Change
5%
Material Development
5%
Material Science
Lithium
73%
Battery (Electrochemical Energy Engineering)
68%
Metal-Organic Framework
57%
Cathode
51%
Energy Density
51%
Nanocomposites
43%
Lithium Ion
39%
Metal Halide
34%
Graphene
34%
Supercapacitors
34%
Nanowire
34%
Dielectric Spectroscopy
34%
Carbon Nanotube
34%
Self Assembly
34%
Solid Electrolyte
34%
Silicon
34%
Halide
25%
Porous Carbon
22%
Density
22%
Composite Material
22%
Lithium Metal Anode
11%
Electrical Impedance
11%
Secondary Battery
11%
Raman Spectroscopy
11%
Transfer Process
11%
Catalyst Activity
11%
Carbon-Based Material
11%
Polymer Additive
11%
Alkaline Electrolyte
11%
Capacitance
11%
Solid State Battery
8%
Microelectromechanical System
8%
Anode
8%
Oxygen Evolution
6%
High Energy Density
6%