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    Please use this identifier to cite or link to this item: http://ir.lib.ncu.edu.tw/handle/987654321/39019


    Title: Liquid-glass transition phase boundary for monodisperse charge-stabilized colloids in the presence of an electrolyte
    Authors: Wang,GF;Lai,SK
    Contributors: 物理研究所
    Keywords: DENSITY-FLUCTUATIONS;SUPERCOOLED LIQUIDS;BROWNIAN PARTICLES;SUSPENSIONS;DIAGRAM;DISPERSIONS;SYSTEMS;APPROXIMATION;DYNAMICS
    Date: 1999
    Issue Date: 2010-07-08 14:02:22 (UTC+8)
    Publisher: 中央大學
    Abstract: The idealized version of the mode-coupling theory which focuses on the nonequilibrium structural aspects of colloidal particles in glass formation is applied to determine the liquid-glass transition boundary for a suspension of monodisperse polystyrene charged spheres as a function of electrolyte concentration. Guided by previous studies of the liquid-fcc-bcc freezing transition, we employ the same macro-ion charge as that used in the latter and predict the colloidal liquid-glass transition loci in remarkably good agreement with measurements. [S0031-9007(99)09045-6].
    Relation: PHYSICAL REVIEW LETTERS
    Appears in Collections:[Graduate Institute of Physics] journal & Dissertation

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