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Physics > Chemical Physics

Title: Quasi-Chemical Theory and Implicit Solvent Models for Simulations

Abstract: A statistical thermodynamic development is given of a new implicit solvent model that avoids the traditional system size limitations of computer simulation of macromolecular solutions with periodic boundary conditions. This implicit solvent model is based upon the quasi-chemical approach, distinct from the common integral equation trunk of the theory of liquid solutions. The physical content of this theory is the hypothesis that a small set of solvent molecules are decisive for these solvation problems. A detailed derivation of the quasi-chemical theory escorts the development of this proposal. The numerical application of the quasi-chemical treatment to Li$^+$ ion hydration in liquid water is used to motivate and exemplify the quasi-chemical theory. Those results underscore the fact that the quasi-chemical approach refines the path for utilization of ion-water cluster results for the statistical thermodynamics of solutions.
Comments: 30 pages, contribution to Santa Fe Workshop on Treatment of Electrostatic Interactions in Computer Simulation of Condensed Media
Subjects: Chemical Physics (physics.chem-ph); Biological Physics (physics.bio-ph)
Journal reference: "Simulation and Theory of Electrostatic Interactions in Solution," AIP Conference Proceedings 492, eds. L. R. Pratt and G. Hummer, 172--201 (1999)
Report number: LA-UR-99-3125
Cite as: arXiv:physics/9909004v1 [physics.chem-ph]

Submission history

From: Lawrence R. Pratt [view email]
[v1] Fri, 3 Sep 1999 15:58:44 GMT (106kb)