4.4 Review

Thirty years of density functional theory in computational chemistry: an overview and extensive assessment of 200 density functionals

Journal

MOLECULAR PHYSICS
Volume 115, Issue 19, Pages 2315-2372

Publisher

TAYLOR & FRANCIS LTD
DOI: 10.1080/00268976.2017.1333644

Keywords

Density functional theory; DFT; benchmark; chemistry database; density functionals

Funding

  1. Basic Energy Sciences [DE-AC02-05CH11231]
  2. MURI [W911NF-14-1-0359]

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In the past 30 years, Kohn-Sham density functional theory has emerged as the most popular electronic structure method in computational chemistry. To assess the ever-increasing number of approximate exchange-correlation functionals, this review benchmarks a total of 200 density functionals on a molecular database (MGCDB84) of nearly 5000 data points. The database employed, provided as Supplemental Data, is comprised of 84 data-sets and contains non-covalent interactions, isomerisation energies, thermochemistry, and barrier heights. In addition, the evolution of non-empirical and semi-empirical density functional design is reviewed, and guidelines are provided for the proper and effective use of density functionals. The most promising functional considered is omega B97M-V, a range-separated hybrid meta-GGA with VV10 nonlocal correlation, designed using a combinatorial approach. From the local GGAs, B97-D3, revPBE-D3, and BLYP-D3 are recommended, while from the local meta-GGAs, B97M-rV is the leading choice, followed by MS1-D3 and M06-L-D3. The best hybrid GGAs are omega B97X-V, omega B97X-D3, and omega B97X-D, while useful hybrid meta-GGAs (besides omega B97M-V) include omega M05-D, M06-2X-D3, and MN15. Ultimately, today's state-of-the-art functionals are close to achieving the level of accuracy desired for a broad range of chemical applications, and the principal remaining limitations are associated with systems that exhibit significant self-interaction/delocalisation errors and/or strong correlation effects. [GRAPHICS] .

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