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Theory of Phase Separation and Polarization for Pure Ionic Liquids
Nir Gavish,
Arik Yochelis
The Swiss Institute for Dryland Environmental and Energy Research
Research output
:
Contribution to journal
›
Article
›
peer-review
53
Scopus citations
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Keyphrases
Phase Separation
100%
Ionic Liquid
100%
Numerical Simulation
50%
Lamellar Structure
50%
Molten Salt
50%
Coulombic Interaction
50%
Morphological Evolution
50%
Room Temperature Ionic Liquid
50%
Charged Surface
50%
Finite Wavenumber
50%
Electrokinetics
50%
Solvent-free Electrolyte
50%
Linear Analysis
50%
Transient Current
50%
Neutral Component
50%
Cahn-Hilliard
50%
Renewable Energy Device
50%
Electrokinetic Phenomena
50%
Poisson
50%
Mean Field
50%
Spatiotemporal
50%
Separation Property
50%
Qualitative Phenomenology
50%
Spatially Periodic
50%
Material Morphology
50%
Bulk Properties
50%
Engineering
Phase Separation
100%
Computer Simulation
50%
Renewable Energy
50%
Transients
50%
Theoretical Study
50%
Charged Surface
50%
Room Temperature
50%
Bulk Property
50%
Lamellar Structure
50%
Electrokinetic Phenomena
50%
Linear Analysis
50%
Material Science
Ionic Liquid
100%
Morphology
50%
Lamellar Structure
50%
Chemical Engineering
Phase Separation
100%