4.7 Article

Freezing lines of colloidal Yukawa spheres. II. Local structure and characteristic lengths

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JOURNAL OF CHEMICAL PHYSICS
卷 141, 期 12, 页码 -

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AMER INST PHYSICS
DOI: 10.1063/1.4895965

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资金

  1. National Centre for Research and Development [PBS1/A9/13/2012]
  2. Polish National Science Centre [2011/01/B/ST3/02271]
  3. SoftComp Network of Excellence [S080118]

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Using the Rogers-Young (RY) integral equation scheme for the static pair correlation functions combined with the liquid-phase Hansen-Verlet freezing rule, we study the generic behavior of the radial distribution function and static structure factor of monodisperse charge-stabilized suspensions with Yukawa-type repulsive particle interactions at freezing. In a related article, labeled Paper I [J. Gapinski, G. Nagele, and A. Patkowski, J. Chem. Phys. 136, 024507 (2012)], this hybrid method was used to determine two-parameter freezing lines for experimentally controllable parameters, characteristic of suspensions of charged silica spheres in dimethylformamide. A universal scaling of the RY radial distribution function maximum is shown to apply to the liquid-bcc and liquid-fcc segments of the universal freezing line. A thorough analysis is made of the behavior of characteristic distances and wavenumbers, next-neighbor particle coordination numbers, osmotic compressibility factor, and the Ravache-Mountain-Streett minimum-maximum radial distribution function ratio. (C) 2014 AIP Publishing LLC.

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