1999
Chain formation in homogeneous gas-liquid nucleation of polar fluids
Publication
Publication
J. Chem. Phys. , Volume 111 p. 4762- 4773
We report a computer-simulation study of homogeneous gas–liquid nucleation in a model for strongly polar fluids. We find that the nucleation process is initiated by chain-like clusters. As the cluster size is increased, the chains become longer. However, beyond a certain size, the nuclei collapse to form compact, spherical clusters. Nevertheless, in the interface of the collapsed nuclei a high degree of chain formation is preserved. We compare the interface of the collapsed nuclei with the planar interface and find that the interface of the globule-like nuclei differs markedly from the flat interface. Classical nucleation theory underestimates both the size of the critical nucleus and the height of the nucleation barrier.
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J. Chem. Phys. | |
Organisation | Biochemical Networks |
ten Wolde, P. R., Oxtoby, D. W., & Frenkel, D. (1999). Chain formation in homogeneous gas-liquid nucleation of polar fluids. J. Chem. Phys., 111, 4762–4773. |