Literature DB >> 29562129

How Accurate Is Density Functional Theory at Predicting Dipole Moments? An Assessment Using a New Database of 200 Benchmark Values.

Diptarka Hait1, Martin Head-Gordon1,2.   

Abstract

Dipole moments are a simple, global measure of the accuracy of the electron density of a polar molecule. Dipole moments also affect the interactions of a molecule with other molecules as well as electric fields. To directly assess the accuracy of modern density functionals for calculating dipole moments, we have developed a database of 200 benchmark dipole moments, using coupled cluster theory through triple excitations, extrapolated to the complete basis set limit. This new database is used to assess the performance of 88 popular or recently developed density functionals. The results suggest that double hybrid functionals perform the best, yielding dipole moments within about 3.6-4.5% regularized RMS error versus the reference values-which is not very different from the 4% regularized RMS error produced by coupled cluster singles and doubles. Many hybrid functionals also perform quite well, generating regularized RMS errors in the 5-6% range. Some functionals, however, exhibit large outliers, and local functionals in general perform less well than hybrids or double hybrids.

Entities:  

Year:  2018        PMID: 29562129     DOI: 10.1021/acs.jctc.7b01252

Source DB:  PubMed          Journal:  J Chem Theory Comput        ISSN: 1549-9618            Impact factor:   6.006


  11 in total

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Authors:  Hsing-Hsiang Huang; Yi-Siang Wang; Sheng D Chao
Journal:  ACS Omega       Date:  2022-05-31

3.  New Force-Field for Organosilicon Molecules in the Liquid Phase.

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Journal:  ACS Phys Chem Au       Date:  2021-08-27

4.  Dipole moments of conjugated donor-acceptor substituted systems: calculations vs. experiments.

Authors:  Vladimir Lokshin; Mark Sigalov; Nina Larina; Vladimir Khodorkovsky
Journal:  RSC Adv       Date:  2021-01-04       Impact factor: 3.361

5.  Choosing Bad versus Worse: Predictions of Two-Photon-Absorption Strengths Based on Popular Density Functional Approximations.

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Journal:  J Chem Theory Comput       Date:  2022-01-26       Impact factor: 6.006

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Authors:  Amna Saeed; Syeda Abida Ejaz; Muhammad Sarfraz; Nissren Tamam; Farhan Siddique; Naheed Riaz; Faizan Abul Qais; Samir Chtita; Jamshed Iqbal
Journal:  Molecules       Date:  2022-06-21       Impact factor: 4.927

7.  Performance of the DLPNO-CCSD and recent DFT methods in the calculation of isotropic and dipolar contributions to 14N hyperfine coupling constants of nitroxide radicals.

Authors:  Oleg I Gromov
Journal:  J Mol Model       Date:  2021-06-01       Impact factor: 1.810

8.  The Alexandria library, a quantum-chemical database of molecular properties for force field development.

Authors:  Mohammad M Ghahremanpour; Paul J van Maaren; David van der Spoel
Journal:  Sci Data       Date:  2018-04-10       Impact factor: 6.444

9.  Static Polarizabilities at the Basis Set Limit: A Benchmark of 124 Species.

Authors:  Anders Brakestad; Stig Rune Jensen; Peter Wind; Marco D'Alessandro; Luigi Genovese; Kathrin Helen Hopmann; Luca Frediani
Journal:  J Chem Theory Comput       Date:  2020-07-08       Impact factor: 6.006

10.  Benchmarking Density Functional Approximations for Excited-State Properties of Fluorescent Dyes.

Authors:  Anna M Grabarz; Borys Ośmiałowski
Journal:  Molecules       Date:  2021-12-08       Impact factor: 4.411

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