Hierarchical Coupling of First-Principles Molecular Dynamics with Advanced Sampling Methods

被引:18
作者
Sevgen, Emre [1 ]
Giberti, Federico [1 ]
Sidky, Hythem [2 ]
Whitmer, Jonathan K. [2 ]
Galli, Giulia [1 ]
Gygi, Francois [3 ]
de Pablo, Juan J. [1 ]
机构
[1] Univ Chicago, 5801 S Ellis Ave, Chicago, IL 60637 USA
[2] Univ Notre Dame, Notre Dame, IN 46556 USA
[3] Univ Calif Davis, 1 Shields Ave, Davis, CA 95616 USA
基金
美国国家科学基金会;
关键词
FORCE-FIELD; ENERGY; SIMULATIONS; WATER; METADYNAMICS; MODEL; ALANINE;
D O I
10.1021/acs.jctc.8b00192
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We present a seamless coupling of a suite of codes designed to perform advanced sampling simulations, with a first-principles molecular dynamics (MD) engine. As an illustrative example, we discuss results for the free energy and potential surfaces of the alanine dipeptide obtained using both local and hybrid density functionals (DFT), and we compare them with those of a widely used classical force field, Amber99sb. In our calculations, the efficiency of first-principles MD using hybrid functionals is augmented by hierarchical sampling, where hybrid free energy calculations are initiated using estimates obtained with local functionals. We find that the free energy surfaces obtained from classical and first-principles calculations differ. Compared to DFT results, the classical force field overestimates the internal energy contribution of high free energy states, and it underestimates the entropic contribution along the entire free energy profile. Using the string method, we illustrate how these differences lead to different transition pathways connecting the metastable minima of the alanine dipeptide. In larger peptides, those differences would lead to qualitatively different results for the equilibrium structure and conformation of these molecules.
引用
收藏
页码:2881 / 2888
页数:8
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