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Determination of the colloidal crystal nucleation rate density
Authors:D J W Aastuen  N A Clark  J C Swindal  C D Muzny
Institution:1. Department of Physics, Condensed Matter Laboratory , University of Colorado , Boulder, Colorado, 80309, USA;2. Department of Chemical Engineering and Material Science , University of Minnesota , 151 Amundson Hall, 421 Washington Avenue S. E., Minneapolis, Minnesota, 55455;3. Department of Physics, Condensed Matter Laboratory , University of Colorado , Boulder, Colorado, 80309, USA
Abstract:Colloidal suspensions of charged latex microspheres in water exhibit liquid-like or crystalline ordering depending on particle interaction and concentration. By virtue of large particle spacing and slow dynamics, colloidal systems offer a unique opportunity to study interfacial structure and dynamics. This paper presents the first reported experimental study of the nucleation rate density, c, of an nonequilibrium (supercooled) colloidal liquid to colloidal crystal first order phase transition. Local and global observations of colloidal crystals growing from a metastable colloidal liquid were used to determine c. Microscopic local observations revealed homogeneous nucleation and constant interface velocity growth of quasispherical crystallites in the bulk and heterogeneous nucleation of a crystalline sheet with lower growth velocity at the cell wall. Complementary global observations of the recrystallization transition made by measuring the time dependence of the suspension transparency (the fraction of transmitted laser light) determined c by fitting this curve to a model based on an extension of Avrami's theory of crystallization.
Keywords:Colloidal crystal  nucleation
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