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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 112, 2014 - Issue 16
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Research Article

On the use of multiple interpolation series in scaled particle theory: improved predictions and limitations

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Pages 2160-2175 | Received 20 Dec 2013, Accepted 31 Jan 2014, Published online: 04 Mar 2014
 

Abstract

We propose further modifications to recent formulations of the scaled particle theory (SPT) of hard particle fluids. In any formulation of SPT, a number of conditions are applied to the central function G. As the exact form of G is unknown, a form must be assumed. Representing G with more than one series has recently been shown (Siderius and Corti, J. Chem. Phys. 127, 144502, 2007) to lead to improved planar surface tension predictions with little change in the already accurate pressure, excess chemical potential and fluid structure predictions. Another condition on G that includes the curvature of the radial distribution at contact was not, however, invoked in this previous work. We incorporate here this additional condition into the multiple series approach, resulting in further improvements to the SPT predictions. We also consider a number of permutations of the multiple interpolation series to explore the limitations of this approach and again find that increasing the number of series will not by itself lead to better predictions of the properties of the hard sphere fluid.

View correction statement:
Corrigendum

This article was originally published with errors. This version has been corrected. Please see Corrigendum (http://dx.doi.org/10.1080/00268976.2014.947164)

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