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Surface-Induced Asymmetries during Spinodal Decomposition in Off-Critical Polymer Mixtures
Georg Krausch
, Edward J. Kramer
,
Frank S. Bates
, J. F. Marko
, G. Brown
, A. Chakrabarti
Chemical Engineering and Materials Science
Research output
:
Contribution to journal
›
Article
›
peer-review
44
Scopus citations
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Dive into the research topics of 'Surface-Induced Asymmetries during Spinodal Decomposition in Off-Critical Polymer Mixtures'. Together they form a unique fingerprint.
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Keyphrases
Spinodal Decomposition
100%
Polymer Mixtures
100%
Wetting Layer
100%
Bulk Composition
66%
Critical Composition
66%
Numerical Simulation
33%
Growth Rate
33%
Fluid Flow
33%
Surface Layer
33%
Non-axisymmetric
33%
Surface Composition
33%
Nucleate
33%
Composition Profile
33%
Hydrodynamic Effect
33%
Nucleation Barrier
33%
Layer Growth
33%
Spinodal
33%
Induced nucleation
33%
Wetting Phase
33%
Universal Scaling Behavior
33%
Near-surface Region
33%
Material Science
Surface (Surface Science)
100%
Nucleation
33%
Hydrodynamics
16%
Coarsening
16%
Surface Structure
16%
Fluid Flow
16%