Potential energy functions for atomic-level simulations of water and organic and biomolecular systems

Yale University

PubMed
Indexed incrossrefpubmed

Abstract

An overview is provided on the development and status of potential energy functions that are used in atomic-level statistical mechanics and molecular dynamics simulations of water and of organic and biomolecular systems. Some topics that are considered are the form of force fields, their parameterization and performance, simulations of organic liquids, computation of free energies of hydration, universal extension for organic molecules, and choice of atomic charges. The discussion of water models covers some history, performance issues, and special topics such as nuclear quantum effects.

Citation impact

1,570
total citations
FWCI
21.77
Percentile
100%
References
95
Citations per year

Authors

2

Topics & keywords

Keywords
  • Statistical physics
  • Molecular dynamics
  • Computation
  • Organic molecules
  • Energy (signal processing)
  • Atomic energy
  • Statistical mechanics
  • Extension (predicate logic)
UN Sustainable Development Goals
  • Affordable and clean energy
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