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Effect of polydispersity on the crystallization kinetics of suspensions of colloidal hard spheres when approaching the glass transition

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posted on 2024-11-23, 06:54 authored by Hans-Jaochim Schoepe, Gary BryantGary Bryant, William Van MegenWilliam Van Megen
We present a comprehensive study of the solidification scenario in suspensions of colloidal hard spheres for three polydispersities between 4.8% and 5.8%, over a range of volume fractions from near freezing to near the glass transition. From these results, we identify four stages in the crystallization process: (i) an induction stage where large numbers of precursor structures are observed, (ii) a conversion stage as precursors are converted to close packed structures, (iii) a nucleation stage, and (iv) a ripening stage. It is found that the behavior is qualitatively different for volume fractions below or above the melting volume fraction. The main effect of increasing polydispersity is to increase the duration of the induction stage, due to the requirement for local fractionation of particles of larger or smaller than average size. Near the glass transition, the nucleation process is entirely frustrated, and the sample is locked into a compressed crystal precursor structure. Interestingly, neither polydispersity nor volume fraction significantly influences the precursor stage, suggesting that the crystal precursors are present in all solidifying samples. We speculate that these precursors are related to the dynamical heterogeneities observed in a number of dynamical studies.

History

Related Materials

  1. 1.
    DOI - Is published in 10.1063/1.2760207
  2. 2.
    ISSN - Is published in 00219606

Journal

Journal of Chemical Physics

Volume

127

Number

084505

Issue

8

Start page

1

End page

7

Total pages

7

Publisher

American Institute of Physics

Place published

Melville, USA

Language

English

Copyright

© 2007 American Institute of Physics

Former Identifier

2006005757

Esploro creation date

2020-06-22

Fedora creation date

2009-10-01

Open access

  • Yes

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