THE ROLE OF METASTABLE STATES IN POLYMER PHASE TRANSITIONS: Concepts, Principles, and Experimental Observations
- 1 August 1998
- journal article
- Published by Annual Reviews in Annual Review of Materials Science
- Vol. 28 (1) , 533-562
- https://doi.org/10.1146/annurev.matsci.28.1.533
Abstract
▪ Abstract Polymer phases can be described in the same way as phases in other condensed matter using a number density operator and its correlation functions. This description requires the understanding of symmetry operations and order at different atomic and molecular levels. Statistical mechanics provides a link between the microscopic description of the structure and motion and the macroscopic thermodynamic properties. Within the limits of the laws of thermodynamics, polymers exhibit a rich variety of phase transition behaviors. By definition, a first-order phase transition describes a transformation that involves a sudden change of thermodynamic properties at its transition temperature, whereas higher-order phase transitions are classified as critical phenomena. Of special interest is the role of metastability in phase and phase transition behaviors. Although a metastable state possesses a local free energy minimum, it is not at the global equilibrium. Furthermore, metastable states can also be associated with phase sizes. Metastable behavior is also observed in phase transformations that are impeded by kinetic limitations along the pathway to thermodynamic equilibrium. This is illustrated in structural and morphological investigations of crystallization and mesophase transitions, liquid-liquid phase separation, vitrification, and gel formation, as well as combinations of transformation processes. In these cases, the metastable state often becomes the dominant state for the entire system and is observed over a range of time and size scales. This review describes the general principles of metastability in polymer phases and phase transitions and provides illustrations from current experimental works in selected areas.Keywords
This publication has 79 references indexed in Scilit:
- Liquid-crystalline polyethers based on conformational isomerism. Part 33.–Thermotropic polyethers based on a mesogenic group containing rigid and flexible units: 1-(4′-hydroxybiphenyl-4-yl)-2-(4-hydroxyphenyl)propaneJournal of Materials Chemistry, 1994
- Ordered structures in a series of liquid-crystalline poly(ester imides)Macromolecules, 1993
- Isothermal thickening and thinning processes in low molecular weight poly(ethylene oxide) fractions crystallized from the melt: 2. Crystals involving more than one foldPolymer, 1992
- Kinetics of mesophase transitions in thermotropic copolyesters. 4. Pendant side-group effectMacromolecules, 1991
- A comment on crystallization in PEKK and PEEK resinsJournal of Polymer Science Part C: Polymer Letters, 1990
- High-temperature structures of poly(p-hydroxybenzoic acid)Macromolecules, 1990
- Kinetics of isotropic-smectic phase transition in liquid-crystalline polyethersMacromolecules, 1990
- Raman longitudinal acoustic mode (LAM) studies of folded‐chain morphology in poly(ethylene oxide) (PEO). I. Normal mode analysis of LAM of a helical‐chain oligomer of PEOJournal of Polymer Science Part B: Polymer Physics, 1990
- Kinetics of mesophase transitions in thermotropic copolyesters. 1. Calorimetric studyMacromolecules, 1988
- Isothermal growth, thickening, and melting of poly(ethylene oxide) single crystals in the bulkJournal of Polymer Science: Polymer Symposia, 1975