4.7 Article

Dispersion-Corrected DFT Struggles with Predicting Three-Body Interaction Energies

期刊

JOURNAL OF CHEMICAL THEORY AND COMPUTATION
卷 14, 期 10, 页码 5079-5089

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.jctc.8b00167

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资金

  1. Polish National Science Centre [2015/17/B/ST4/03727]
  2. Ministry of Science and Technology of Taiwan [MOST 105-2932-M-009-001-MY3]
  3. Center for Emergent Functional Matter Science of National Chiao Tung University from the Featured Areas Research Center Program by the Ministry of Education (MOE), Taiwan

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We demonstrate that the dispersion-corrected density functional theory (DFT-D) schemes fall short of predicting reliable three-body interaction energies. This concerns also a popular variant of DFT-D called the many-body dispersion (MBD) method, which might seem surprising in the light of the fact that its name contains the very phrase many-body. The main reason for the inaccuracy of the three-body interaction energies in the DFT-D schemes can be attributed to internal deficiencies of the standard DFT functionals that the existing -D methods are incapable of correcting since the main problems emerge from the terms not related to the dispersion component. At present, it seems that none of the a posteriori dispersion techniques are able to predict accurately the total interaction energy for a supermolecular system together with its simultaneous decomposition into the many-body components. On the other hand, if one is interested only in the three-body interaction energies, we propose an adjustment to the MBD approach that achieves good accuracy in conjunction with the supermolecular MP2.

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