Mode-coupling theory of the glass transition for confined fluids.
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Summary
This work presents a detailed derivation of a microscopic theory for the glass transition of a liquid enclosed between two parallel walls relying on a mode-coupling approximation and proves that the equations for the nonergodicity parameters still display a covariance property similar to bulk liquids.
- Type
- article
- Published
- 2012-08-09
- Cited by
- 45
- References
- 75
- Access
- Open access
- OpenAlex
- https://openalex.org/W2066071194
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:41290621
Keywords
Perpendicular, Mode coupling, Symmetry (geometry), Coupling (piping), Function (biology)
References
- Completely Monotone Solutions of the Mode-Coupling Theory for Mixtures
- Available states and available space: static properties that predict self-diffusivity of confined fluids
- Liquid-glass transition of a fluid confined in a disordered porous matrix: a mode-coupling theory.
- Testing mode-coupling theory for a supercooled binary Lennard-Jones mixture I: The van Hove correlation function.
- The relaxation dynamics of a simple glass former confined in a pore
- Water confined in MCM-41: a mode coupling theory analysis
- Molecular correlations in a supercooled liquid
- Mode-coupling glass transition in a fluid confined by a periodic potential.
- REVIEW ARTICLE: Recent tests of the mode-coupling theory for glassy dynamics
- Computer simulations of supercooled polymer melts in the bulk and in confined geometry
- Ikeda and Miyazaki Reply
- Tests of mode-coupling theory in two dimensions.
- Inhomogeneous mode-coupling theory and growing dynamic length in supercooled liquids.
- Evolution of structural relaxation spectra of glycerol within the gigahertz band
- General Properties of Certain Non-linear Integro-Differential Equations
- Theory for the reorientational dynamics in glass-forming liquids
- Measurement of the self-intermediate scattering function of suspensions of hard spherical particles near the glass transition
- Glass transition of binary mixtures of dipolar particles in two dimensions
- Anisotropic pair correlations and structure factors of confined hard-sphere fluids: an experimental and theoretical study.
- Dynamic glass transition in two dimensions.
Cited by
- Communication: Local structure-mobility relationships of confined fluids reverse upon supercooling.
- Dynamic correlations and confinement effects in glass forming hard sphere systems
- Chain of kinetic equations for the distribution functions of particles in simple liquid taking into account nonlinear hydrodynamic fluctuations
- Long-time limit of correlation functions
- Simulated glass-forming polymer melts: Dynamic scattering functions, chain length effects, and mode-coupling theory analysis
- Dynamics of asymmetric binary glass formers. I. A dielectric and nuclear magnetic resonance spectroscopy study.
- Structural quantities of quasi-two-dimensional fluids.
- Mode-coupling theory for multiple decay channels
- Packing frustration in dense confined fluids.
- Mode coupling and fragile to strong transition in supercooled TIP4P water.
- The impact range for smooth wall-liquid interactions in nanoconfined liquids.
- Multiple reentrant glass transitions in confined hard-sphere glasses
- Local structure and density fluctuations in confined fluids
- Non-monotonic effect of confinement on the glass transition
- How Local and Average Particle Diffusivities of Inhomogeneous Fluids Depend on Microscopic Dynamics.
- Connection between thermodynamics and dynamics of simple fluids in highly attractive pores.
- Strongly confined fluids: Diverging time scales and slowing down of equilibration.
- Slow Water Dynamics near a Glass Transition or a Solid Interface: A Common Rationale.
- Role of density modulation in the spatially resolved dynamics of strongly confined liquids.
- Impact of solvent granularity and layering on tracer hydrodynamics in confinement.
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