| Literature DB >> 26537332 |
Zhao Jin1, Chunwei Yang1, Fenglei Cao1, Feng Li1, Zhifeng Jing1, Long Chen1, Zhe Shen1, Liang Xin1, Sijia Tong1, Huai Sun1.
Abstract
The extensibility of force field is a key to solve the missing parameter problem commonly found in force field applications. The extensibility of conventional force fields is traditionally managed in the parameterization procedure, which becomes impractical as the coverage of the force field increases above a threshold. A hierarchical atom-type definition (HAD) scheme is proposed to make extensible atom type definitions, which ensures that the force field developed based on the definitions are extensible. To demonstrate how HAD works and to prepare a foundation for future developments, two general force fields based on AMBER and DFF functional forms are parameterized for common organic molecules. The force field parameters are derived from the same set of quantum mechanical data and experimental liquid data using an automated parameterization tool, and validated by calculating molecular and liquid properties. The hydration free energies are calculated successfully by introducing a polarization scaling factor to the dispersion term between the solvent and solute molecules.Entities:
Keywords: all-atom force field; atom types; extensibility; hydration free energy; organic compounds
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Year: 2015 PMID: 26537332 DOI: 10.1002/jcc.24244
Source DB: PubMed Journal: J Comput Chem ISSN: 0192-8651 Impact factor: 3.376