This study is the first attempt to generate a realistic model for the clay-
cation-water system. We use a molecular description of the solvent and clay
sheet. We have chosen two clay materials from 2:1 dioctahedral smectites (
1) montmorillonite and (2) beidellite to monitor the effect of negative cha
rge on the location of interlayer cation (Na+), as the negative charge gets
introduced in the clay system from octahedral Al substitution and tetrahed
ral Si substitution as the case may be (1) and (2), respectively. We use Gr
and Canonical Monte Carlo (GCMC) simulation to locate the interlayer cation
and to calculate the number of interlayer water molecules surrounding the
cation (Na+)for both the clay materials. The results show that each Na+ cat
ion is surrounded by five water molecules. The minimum energy conformer obt
ained from GCMC calculations has been used to generate the cluster model fo
r Local Density Functional (LDF) calculations, The results show the Na+ cat
ion moves towards the negative center of the clay cluster. It is also obser
ved that Na+ cation gets more stabilized in montmorillonite in comparison t
o beidellite. (C) 1999 Elsevier Science B.V. All rights reserved.