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Theory of glassy dynamics in conformationally anisotropic polymer systems
Folusho T. Oyerokun
,
Kenneth S. Schweizer
Materials Science and Engineering
Chemical and Biomolecular Engineering
Chemistry
Materials Research Lab
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peer-review
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Keyphrases
Polymer System
100%
Glassy Dynamics
100%
Anisotropic Polymers
100%
Thermodynamics
33%
Local Deformation
33%
Reference Interaction Site Model
33%
Model Theory
33%
Coupled Mode Theory
33%
Glass Transition Temperature
33%
Equilibrium Properties
33%
Activated Dynamics
33%
Interpenetration
33%
Orientational Order
33%
Crossover Temperature
33%
Mode Coupling
33%
Polymer Thin Films
33%
Rubber Network
33%
Segmental Dynamics
33%
Grafted Brushes
33%
Polymer Liquids
33%
Bulk Modulus
33%
Coupling Approach
33%
Liquid Crystal Polymer
33%
Ideal Glass Transition
33%
Local Alignment
33%
Network Chain
33%
Discotic
33%
Segment-level
33%
Barrier Formation
33%
Coil Deformation
33%
Segmental Alignment
33%
Brush Layer
33%
Material Science
Thin Films
100%
Elastic Moduli
100%
Glass Transition Temperature
100%
Liquid Crystal Polymer
100%
Engineering
Anisotropic
100%
Polymer System
100%
Thin Films
25%
Bulk Modulus
25%
Liquid Polymer
25%
Liquid Crystalline Polymer
25%