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On the validity of the capillarity approximation in the rate theory of homogeneous nucleation
Authors:Jong K. Lee  Farid F. Abraham  G.M. Pound
Affiliation:1. IBM Research Laboratory, San Jose, California, U.S.A.;2. Engineering, Stanford University, Stanford, California, U.S.A.
Abstract:An Einstein model is used to calculate the internal vibrational free energy of approximately spherical fcc crystallites as a function of crystallite size at T/θ = 1. It is found that the free energy per surface atom does not become convergent until a size of about 3 × 107 atoms is reached. The excess free energy at convergence is used to define the macroscopic surface tension for use in the capillarity approximation. The internal free energy of microcrystallites containing of the order of 100 atoms is fortuitously well described by the capillarity approximation. A good estimate of the total free energy of the microcrystallite (nucleus) is obtained from the capillarity approximation only by adding the contributions from free translation and rotation and the replacement partition function.
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