4.7 Article

The bridging force between two plates by polyelectrolyte chains

期刊

ADVANCES IN COLLOID AND INTERFACE SCIENCE
卷 112, 期 1-3, 页码 37-47

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.cis.2004.06.003

关键词

bridging interaction; polyelectrolyte; self-consistent field theory; van der waals interactions; repulsive force

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The interaction between particles in a colloidal system can be significantly affected by their bridging by polyelectrolyte chains. In this paper, the bridging is investigated by using a self-consistent field approach which takes into account the van der Waals interactions between the segments of the polyelectrolyte molecules and the plates, as well as the electrostatic and volume exclusion interactions. A positive contribution to the force between two plates is generated by the van der Waals interactions between the segments and the plates. This positive repulsive contribution plays an important role in the force when the distances between the plates are small. With increasing van der Waals interaction strength between segments and plates, the force between the plates becomes more repulsive at small distances and more attractive at large distances. When the surfaces of the plates have a constant surface electrical potential and a charge sign opposite to that of the polyelectrolyte chains, the force between the two plates becomes less attractive as the bulk polyelectrolyte concentration increases. This behavior is due to a higher bulk counterion concentration dissociated from the polyelectrolyte molecules. At short distances, the force between plates is more repulsive for stiffer chains. A comparison between theoretical and experimental results regarding the contraction of the interlayer separation between the platelets of vermiculite clays against the concentration of poly(vinyl methyl ether) was made. (C) 2004 Elsevier B.V. All rights reserved.

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