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  4. Distribution of colloidal particles in a spherical cavity
 
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Distribution of colloidal particles in a spherical cavity

Journal
Journal of Physical Chemistry B
Journal Volume
109
Journal Issue
38
Pages
18048-18054
Date Issued
2005
Author(s)
Hsu J.-P.  
Jiang J.-M.
Tseng S.
Liu B.-T.
DOI
10.1021/jp051151x
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/409339
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-26844580766&doi=10.1021%2fjp051151x&partnerID=40&md5=11c76b4ce3e59118ea86cd94ee18c872
Abstract
The spatial distribution of colloidal particles in a confined space is frequently a key issue to many phenomena of practical significance. This problem is investigated by considering the distribution of colloidal particles in a spherical cavity under the conditions of relatively large cavities, low cavity and colloidal particles potentials, and low monovalent electrolyte and colloidal concentrations. The analytical expression for the particle-cavity pair interaction energy is derived under various surface conditions. The results obtained are used to evaluate the direct correlation functions in the hypernetted chain approximation employed for the resolution of an Ornstein-Zernike equation. For a fixed particle number concentration at the center of a cavity, we make the following conclusions: (i) the spatial distribution of particles increases in an oscillatory manner with the distance away from the cavity surface, (ii) increasing the particle-cavity pair interaction energy has the effect of reducing the free space of particles inside a cavity, and (iii) the greater the pair interaction energy between two particles, the higher the average concentration of particles. ? 2005 American Chemical Society.
Type
journal article

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