r2SCAN-3c: A “Swiss army knife” composite electronic-structure method
The recently proposed r2SCAN meta-generalized-gradient approximation (mGGA) of Furness and co-workers is used to construct an efficient composite electronic-structure method termed r2SCAN-3c. To this end, the unaltered r2SCAN functional is combined with a tailor-made triple-ζ Gaussian atomic orbital basis set as well as with refitted D4 and geometrical counter-poise corrections for London-dispersion and basis set superposition error. The performance of the new method is evaluated for the GMTKN55 database covering large parts of chemical space with about 1500 data points, as well as additional benchmarks for non-covalent interactions, organometallic reactions, and lattice energies of organic molecules and ices, as well as for the adsorption on polar salt and non-polar coinage-metal surfaces. These comprehensive tests reveal a spectacular performance and robustness of r2SCAN-3c: It by far surpasses its predecessor B97-3c at only twice the cost and provides one of the best results of all semi-local density-functional theory (DFT)/QZ methods ever tested for the GMTKN55 database at one-tenth of the cost. Specifically, for reaction and conformational energies as well as non-covalent interactions, it outperforms prominent hybrid-DFT/QZ approaches at two to three orders of magnitude lower cost. Perhaps, the most relevant remaining issue of r2SCAN-3c is self-interaction error (SIE), owing to its mGGA nature. However, SIE is slightly reduced compared to other (m)GGAs, as is demonstrated in two examples. After all, this remarkably efficient and robust method is chosen as our new group default, replacing previous composite DFT and partially even expensive high-level methods in most standard applications for systems with up to several hundreds of atoms.
Top-30
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Angewandte Chemie - International Edition
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Angewandte Chemie
56 publications, 6.97%
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Inorganic Chemistry
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17 publications, 2.11%
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Molecules
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ACS Omega
13 publications, 1.62%
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Dalton Transactions
12 publications, 1.49%
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ACS Catalysis
9 publications, 1.12%
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Nature Communications
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ChemPhysChem
8 publications, 1%
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Organometallics
7 publications, 0.87%
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European Journal of Inorganic Chemistry
7 publications, 0.87%
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Journal of Physical Chemistry B
7 publications, 0.87%
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New Journal of Chemistry
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Organic and Biomolecular Chemistry
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RSC Advances
5 publications, 0.62%
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Advanced Functional Materials
5 publications, 0.62%
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ChemCatChem
5 publications, 0.62%
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Wiley
228 publications, 28.36%
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American Chemical Society (ACS)
222 publications, 27.61%
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Royal Society of Chemistry (RSC)
111 publications, 13.81%
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Elsevier
84 publications, 10.45%
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Springer Nature
40 publications, 4.98%
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MDPI
37 publications, 4.6%
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AIP Publishing
29 publications, 3.61%
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Pleiades Publishing
12 publications, 1.49%
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IOP Publishing
5 publications, 0.62%
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American Association for the Advancement of Science (AAAS)
5 publications, 0.62%
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Taylor & Francis
4 publications, 0.5%
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Georg Thieme Verlag KG
3 publications, 0.37%
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Beilstein-Institut
3 publications, 0.37%
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CSIRO Publishing
2 publications, 0.25%
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Proceedings of the National Academy of Sciences (PNAS)
2 publications, 0.25%
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Cold Spring Harbor Laboratory
2 publications, 0.25%
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American Physical Society (APS)
2 publications, 0.25%
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Oxford University Press
2 publications, 0.25%
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Annual Reviews
1 publication, 0.12%
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Canadian Science Publishing
1 publication, 0.12%
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Nonferrous Metals Society of China
1 publication, 0.12%
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OOO Zhurnal "Mendeleevskie Soobshcheniya"
1 publication, 0.12%
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Walter de Gruyter
1 publication, 0.12%
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The Royal Society
1 publication, 0.12%
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Stichting SciPost
1 publication, 0.12%
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International Union of Crystallography (IUCr)
1 publication, 0.12%
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Pharmaceutical Society of Japan
1 publication, 0.12%
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Copernicus
1 publication, 0.12%
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