Keyphrases
Lithium-ion Transport
100%
Liquid Electrolyte
100%
Micropore
100%
Zeolite
66%
Li Transport
44%
Counterion
44%
Diffusion Mechanism
44%
Diffusion Rate
44%
Li Diffusion
33%
Zeolite Pores
33%
Solvate
33%
Pore Size
33%
Transport Rate
33%
Zeolite Membrane
33%
Controlling Factors
22%
Lithium-ion Battery
22%
Transport Mechanism
22%
Gaps in Knowledge
22%
Li-ion
22%
Dynamic Potential
11%
Li-ion Transport
11%
Li-ion Migration
11%
Polycrystalline Membranes
11%
Constrained Diffusions
11%
Potential of Mean Force
11%
Liquid-filled
11%
Solid Supported Membrane
11%
Lithium Salts
11%
Ethylene Carbonate
11%
High Safety Battery
11%
Fast Diffusion
11%
Separation Membrane
11%
Zeolitic
11%
Li Extraction
11%
Lithium Extraction
11%
Pore Size Effect
11%
Umbrella Sampling
11%
Ionic Diffusivity
11%
Solvation Shell
11%
Shell Formation
11%
Transition State Search
11%
Transport Mechanics
11%
Ion Size
11%
Metal Membrane
11%
Spatiotemporal Scales
11%
Molecular Dynamics
11%
Potential Impact
11%
Density Functional Theory
11%
Small Molecules
11%
Li-ion Battery
11%
Tunable Parameters
11%
Liquid Solvents
11%
Associate Professor
11%
Regent
11%
Lithium
11%
Liquid System
11%
Energy Storage Devices
11%
Crystalline Materials
11%
Solvation
11%
Matter Transport
11%
Constrained Environment
11%
Performance Improvement
11%
High Power Density
11%
Diffusion Behavior
11%
Direct Transition
11%
Arizona
11%
Nanoporous
11%
Field Density
11%
Metal Ions
11%
Tempe
11%
Lithium Metal Batteries
11%
Li-ion Diffusion
11%
Chemical Engineering
11%
Theory Learning
11%
Nanopore
11%
Force Field
11%
Membrane Technology
11%
Solvent Effect
11%
Lithium Recovery
11%
Lithium-ion
11%
Large Potential
11%
Computational Study
11%
Machine Learning Techniques
11%
Engineering Schools
11%
Membrane Separation
11%
Ion Permeation
11%
Arizona State University
11%
Porous Materials
11%
Chemistry
Lithium Ion
100%
Electrolyte Solution
100%
Counterion
33%
Pore Size
33%
Lithium Ion Battery
16%
Lithium
16%
Solvation
16%
Lithium Salt
8%
Chemical Engineering
8%
Lithium Metal Battery
8%
Size Effect
8%
Membrane Extraction
8%
Solvent Effect
8%
Membranes Separation
8%
formation
8%
Ethylene
8%
Nanoporosity
8%
Molecular Dynamics
8%
Porosity
8%
Transition State
8%
Crystalline Material
8%
Diffusivity
8%
Energetics
8%
Energy Storage
8%
Density Functional Theory
8%
Engineering
Micropore
100%
Porosity
22%
Lithium-Ion Batteries
22%
Power Density
11%
Polycrystalline
11%
Size Effect
11%
Liquid System
11%
Applicability
11%
Membrane Technology
11%
Energetics
11%
Nanopore
11%
Engineering
11%
Diffusivity
11%
Lithium Metal Battery
11%
Ethylene Carbonate
11%
Diffusion Behavior
11%
Chemical Engineering
11%
Filled Material
11%
Machine Learning Technique
11%
Membranes Separation
11%
Transport Mechanism
11%
Energy Storage
11%
Assistant Professor
11%
Bridging
11%