Notes: Kinetic unfreezing of a binary alloy and configurational entropy

Analysis of the specific heat data of a partially disordered, kinetically frozen state of Mg 3 Cd crystal shows that, as for glass relaxation, its atomic diffusion rate is nonexponential but less nonlinear. As its state transforms on heating to an equilibrium disordered state in a time-dependent man...

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Veröffentlicht in:The Journal of chemical physics 2010-08, Vol.133 (5), p.056101-056101-2
Hauptverfasser: Johari, G. P., Aji, Daisman P. B.
Format: Artikel
Sprache:eng
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Zusammenfassung:Analysis of the specific heat data of a partially disordered, kinetically frozen state of Mg 3 Cd crystal shows that, as for glass relaxation, its atomic diffusion rate is nonexponential but less nonlinear. As its state transforms on heating to an equilibrium disordered state in a time-dependent manner, the enthalpy increases by 362.8 J/mol and the entropy by 1.28 J/molK. Increase in the vacancy population on heating raises the probability of partial disintegration of its superlattice. Kinetic-unfreezing temperature is the same in the enthalpy and entropy considerations. If that were found also for a glass, its configurational entropy would be finite.
ISSN:0021-9606
1089-7690
DOI:10.1063/1.3464271