| Literature DB >> 30237285 |
Ying Wang1,2, Pragya Verma3,4,5, Xinsheng Jin1,2, Donald G Truhlar6,4,5, Xiao He7,2,8.
Abstract
We present a hybrid metageneralized-gradient-approximation functional, revM06, which is based on adding Hartree-Fock exchange to the revM06-L functional form. Compared with the original M06 suite of density functionals, the resulting revM06 functional has significantly improved across-the-board accuracy for both main-group and transition-metal chemistry. The revM06 functional improves on the M06-2X functional for main-group and transition-metal bond energies, atomic excitation energies, isomerization energies of large molecules, molecular structures, and both weakly and strongly correlated atomic and molecular data, and it shows a clear improvement over M06 and M06-2X for noncovalent interactions, including smoother potential curves for rare-gas dimers. The revM06 functional also predicts more accurate results than M06 and M06-2X for most of the outside-the-training-set test sets examined in this study. Therefore, the revM06 functional is well-suited for a broad range of chemical applications for both main-group and transition-metal elements.Entities:
Keywords: bond energies; chemical reaction barriers; density functional theory; electronic structure; thermochemistry
Year: 2018 PMID: 30237285 PMCID: PMC6187147 DOI: 10.1073/pnas.1810421115
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205