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Predicting for thermodynamic instabilities in water/oil/surfactant microemulsions: A mesoscopic modelling approach
Magali Duvail,
Lise Arleth
, Thomas Zemb, Jean-Francois Dufreche
Xray and Neutron Science
16
Citations (Scopus)
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Dive into the research topics of 'Predicting for thermodynamic instabilities in water/oil/surfactant microemulsions: A mesoscopic modelling approach'. Together they form a unique fingerprint.
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Keyphrases
Surfactant
100%
Thermodynamic Instability
100%
Microemulsion
100%
Mesoscopic Modeling
100%
Modeling Approach
100%
Stability Diagram
50%
Spontaneous Curvature
50%
Continuous Transition
50%
Water-in-oil Droplets
50%
Nonionic
25%
Two-level
25%
Thermodynamic Properties
25%
Structural Properties
25%
Oilfield Produced Water
25%
Function Point
25%
Water Droplet
25%
Scattering Function
25%
Elastic Constants
25%
Inversion Phenomena
25%
Random-field Method
25%
Helfrich
25%
Microstructure
25%
Phase Inversion
25%
Gaussian Random Field
25%
Instability Domain
25%
Scattering Spectra
25%
Material Science
Surface Active Agent
100%
Microemulsion
100%
Structural Property
25%
Elasticity
25%
Rigidity
25%