4.7 Article

Understanding intermolecular interactions of large systems in ground state and excited state by using density functional based tight binding methods

期刊

JOURNAL OF CHEMICAL PHYSICS
卷 154, 期 19, 页码 -

出版社

AIP Publishing
DOI: 10.1063/5.0052060

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资金

  1. National Natural Science Foundation of China [21733008, 21973077]
  2. New Century Excellent Talents in Fujian Province University
  3. Fundamental Research Funds for the Central Universities [20720190046]

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DFTB-EDA is a novel energy decomposition analysis scheme based on the DFTB/TD-DFTB method, capable of analyzing interactions in large molecular systems with high efficiency, including intermolecular interactions and non-covalent bonding. Test calculations have demonstrated the efficiency, usefulness, and capabilities of DFTB-EDA.
A novel energy decomposition analysis scheme, named DFTB-EDA, is proposed based on the density functional based tight-binding method (DFTB/TD-DFTB), which is a semi-empirical quantum mechanical method based on Kohn-Sham-DFT for large-scale calculations. In DFTB-EDA, the total interaction energy is divided into three terms: frozen density, polarization, and dispersion. Owing to the small cost of DFTB/TD-DFTB, DFTB-EDA is capable of analyzing intermolecular interactions in large molecular systems containing several thousand atoms with high computational efficiency. It can be used not only for ground states but also for excited states. Test calculations, involving the S66 and L7 databases, several large molecules, and non-covalent bonding complexes in their lowest excited states, demonstrate the efficiency, usefulness, and capabilities of DFTB-EDA. Finally, the limits of DFTB-EDA are pointed out.

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