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Monte Carlo simulation of interlayer molecular structure in swelling clay minerals; 1, Methodology

N. T. Skipper, Fang-Ru Chou Chang and Garrison Sposito
Monte Carlo simulation of interlayer molecular structure in swelling clay minerals; 1, Methodology
Clays and Clay Minerals (June 1995) 43 (3): 285-293

Abstract

Monte Carlo (MC) simulations of molecular structure in the interlayers of 2:1 Na-saturated clay minerals were performed to address several important simulation methodological issues. Investigation was focused on monolayer hydrates of the clay minerals because these systems provide a severe test of the quality and sensitivity of MC interlayer simulations. Comparisons were made between two leading models of the water-water interaction in condensed phases, and the sensitivity of the simulations to the size or shape of the periodically-repeated simulation cell was determined. The results indicated that model potential functions permitting significant deviations from the molecular environment in bulk liquid water are superior to those calibrated to mimic the bulk water structure closely. Increasing the simulation cell size or altering its shape from a rectangular 21.12 Aa x 18.28 Aa 6.54 Aa cell (about eight clay mineral unit cells) had no significant effect on the calculated interlayer properties.


ISSN: 0009-8604
Coden: CLCMAB
Serial Title: Clays and Clay Minerals
Serial Volume: 43
Serial Issue: 3
Title: Monte Carlo simulation of interlayer molecular structure in swelling clay minerals; 1, Methodology
Affiliation: University College, Department of Physics and Astronomy, London, United Kingdom
Pages: 285-293
Published: 199506
Text Language: English
Publisher: Clay Minerals Society, Clarkson, NY, United States
References: 37
Accession Number: 1995-068486
Categories: Mineralogy of silicates
Document Type: Serial
Bibliographic Level: Analytic
Annotation: For reference to Part 2 see Skipper, N. T., et al., Clays and Clay Miner., Vol. 43, p. 294, 1995
Illustration Description: illus. incl. 3 tables
Secondary Affiliation: University of California at Berkeley, USA, United States
Country of Publication: United States
Secondary Affiliation: GeoRef, Copyright 2017, American Geosciences Institute. Abstract, Copyright, Mineralogical Society of Great Britain and Ireland
Update Code: 199524
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