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Building Water Models: A Different Approach

The Journal of Physical Chemistry Letters · 2014 · Vol. 5(21) · pp. 3863–3871
Saeed IzadiRamu AnandakrishnanAlexey V. Onufriev

Abstract

Simplified classical water models are currently an indispensable component in practical atomistic simulations. Yet, despite several decades of intense research, these models are still far from perfect. Presented here is an alternative approach to constructing widely used point charge water models. In contrast to the conventional approach, we do not impose any geometry constraints on the model other than the symmetry. Instead, we optimize the distribution of point charges to best describe the "electrostatics" of the water molecule. The resulting "optimal" 3-charge, 4-point rigid water model (OPC) reproduces a comprehensive set of bulk properties significantly more accurately than commonly used rigid models: average error relative to experiment is 0.76%. Close agreement with experiment holds over a wide range of temperatures. The improvements in the proposed model extend beyond bulk properties: compared to common rigid models, predicted hydration free energies of small molecules using OPC are uniformly closer to experiment, with root-mean-square error <1 kcal/mol.

Spectroscopy and Quantum Chemical StudiesProtein Structure and DynamicsTheoretical and Computational PhysicsWater modelStatistical physicsElectrostaticsPoint (geometry)Range (aeronautics)Point particleCharge (physics)Set (abstract data type)Symmetry (geometry)Mean squared error

Funding

  • National Institute of General Medical Sciences
  • Division of Computer and Network Systems
Citations
1,318
FWCI
11.00
field-weighted impact
References
65
Percentile
99%
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References
Comparison of simple potential functions for simulating liquid water
The Journal of Chemical Physics · 1983 · 41,376 citations
A general purpose model for the condensed phases of water: TIP4P/2005
The Journal of Chemical Physics · 2005 · 3,883 citations
Building Force Fields: An Automatic, Systematic, and Reproducible Approach
The Journal of Physical Chemistry Letters · 2014 · 623 citations
The missing term in effective pair potentials
The Journal of Physical Chemistry · 1987 · 13,192 citations
Structure and Dynamics of the TIP3P, SPC, and SPC/E Water Models at 298 K
The Journal of Physical Chemistry A · 2001 · 4,337 citations
Effective pair potentials and the properties of water
Chemical Physics · 1989 · 339 citations
The Amber biomolecular simulation programs
Journal of Computational Chemistry · 2005 · 9,470 citations
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