4.6 Article

Characteristic relaxation times and their invariance to thermodynamic conditions

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SOFT MATTER
卷 4, 期 12, 页码 2316-2322

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ROYAL SOC CHEMISTRY
DOI: 10.1039/b804794d

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  1. Office of Naval Research

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The dynamics of molecular liquids and polymers exhibit various transitions'', associated with characteristic changes in properties. With decreasing temperature or increasing pressure, these transitions include (i) the onset of intermolecular cooperativity with consequent non-Arrhenius and non-Debye behavior; (ii) the dynamic crossover at which derivatives of the relaxation time and strength exhibit breaks; (iii) vitrification, corresponding to cessation of translational and rotational motions; and (iv) for anisotropic molecules the development of liquid crystallinity. At each of these transitions of a liquid, the structural or reorientational relaxation time is constant, independent of thermodynamic conditions; that is, while the temperature of the transition depends on pressure, the relaxation does not.

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