Keyphrases
Dynamic nuclear Polarization
69%
Solid-state NMR
42%
Solid-state NMR Spectroscopy
30%
Solid-state nuclear Magnetic Resonance (ssNMR)
28%
Solid Electrolyte Interphase
25%
Metal Ions
22%
Heteronuclear Dipolar Decoupling
21%
Magic Angle Spinning
20%
NMR Spectroscopy
20%
Paramagnetic Ions
18%
Ion Dynamics
18%
Lithium
17%
Nuclear Magnetic Resonance
17%
High Energy
16%
Cathode Material
14%
Dopant
14%
Phase Modulation
13%
Lee-Goldburg
13%
Lithium-ion Battery
13%
Endogenous Dynamics
13%
In Situ
12%
Inorganic Solids
12%
Floquet
12%
Sensitivity Enhancement
11%
Li-O2 Battery
11%
Metal Ion Dopants
11%
Electrode Materials
10%
Solid State
10%
Electrolyte
10%
Polarizing Agents
10%
Thin Film Coating
9%
Natural Abundance
9%
Lithiation
9%
High-resolution
8%
Floquet Theory
8%
Phase Transformation
8%
Discharge Products
8%
Lithium-oxygen Battery
8%
Electrode-electrolyte Interface
8%
LiCoPO4
8%
Li-ion Battery
8%
Proton
8%
Electrochemical Performance
8%
Nuclear Spin
8%
Battery Cell
8%
Nanocrystals
8%
Interphase Formation
7%
NMR Studies
7%
Li4Ti5O12
7%
Continuous Wave
7%
Material Science
Nuclear Magnetic Resonance
100%
Dynamic Nuclear Polarization
66%
Lithium
65%
Nuclear Magnetic Resonance Spectroscopy
59%
Cathode
38%
Surface (Surface Science)
28%
Solid Electrolyte
27%
Doping (Additives)
25%
Lithium Ion Battery
24%
Solid-State Nuclear Magnetic Resonance
20%
Cathode Material
19%
Phase Composition
18%
Oxide Compound
17%
Manganese
14%
Anode
11%
Lithium Ion
11%
Energy Density
10%
Silicon
9%
Dipolar Coupling
8%
Boron
7%
Thin Film Coating
7%
Pulse Sequence
7%
Reduced Graphene Oxide
7%
X-Ray Photoelectron Spectroscopy
7%
Sensitivity Enhancement
7%
Secondary Battery
6%
Sodium Ion Battery
6%
Spin Diffusion
6%
Redox Process
5%
Transition Metal
5%
Sodium Ion
5%
Oxidation Reaction
5%
Chemistry
NMR Spectroscopy
43%
Dynamic Nuclear Polarization
39%
Solid-State NMR
30%
Mugineic Acid
30%
Metal Ion
22%
formation
16%
Lithium
14%
Volume
13%
Solid-State Nuclear Magnetic Resonance
12%
Lithium Ion Battery
12%
electrode
12%
Doping Material
12%
Computer Simulation
9%
Relaxation
9%
Sensitivity Enhancement
8%
First Principle
7%
Pulse Sequence
7%
Dipolar Coupling
7%
Phosphorus
7%
Solid Electrolyte
7%
Nanocrystalline Material
7%
Electrode Material
5%
Nuclear Spin
5%
Electron Spin
5%
Line Broadening
5%
NMR Spectrum
5%