Thermodynamic measurement of physical stability, the driving force behind crystallization Amorphous and glassy states of molecular and pharmaceutical compounds: general properties
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Thermodynamic measurement of physical stability, the driving force behind crystallization Amorphous and glassy states of molecular and pharmaceutical compounds: general properties
4. Thermodynamic measurement of physical stability, the driving force behind crystallization
At a given pressure P, a crystal melts at temperature Tm. The possible existence, below Tm, of both states, crystalline or subcooled liquid (which is amorphous), raises the question of the relative stability of these states. For transformations occurring at a given temperature T and pressure P, the stability of a state is measured by the Gibbs free energy G, also called free enthalpy. G is defined by :
( 4 )
The differential form of G (T, P) as T and P vary is given by :
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