2020
DOI: 10.1002/jcc.26197
|View full text |Cite
|
Sign up to set email alerts
|

Spin‐flip approach within time‐dependent density functional tight‐binding method: Theory and applications

Abstract: A spin-flip time-dependent density functional tight-binding (SF-TDDFTB) method is developed that describes target states as spin-flipping excitation from a high-spin reference state obtained by the spin-restricted open shell treatment. Furthermore, the SF-TDDFTB formulation is extended to long-range correction (LC), denoted as SF-TDLCDFTB. The LC technique corrects the overdelocalization of electron density in systems such as charge-transfer systems, which is typically found in conventional DFTB calculations a… Show more

Help me understand this report

Search citation statements

Order By: Relevance

Paper Sections

Select...
1
1
1
1

Citation Types

0
23
0

Year Published

2020
2020
2024
2024

Publication Types

Select...
7
1

Relationship

2
6

Authors

Journals

citations
Cited by 15 publications
(23 citation statements)
references
References 84 publications
0
23
0
Order By: Relevance
“…It is hopeful that DFTB-EDA will be capable of describing excited states of single, double, and mixed excitation character when spin-flip TD-DFTB is employed. 75 With further development of DFTB, improvements in the accuracy of DFTB-EDA can also be expected.…”
Section: Discussionmentioning
confidence: 99%
“…It is hopeful that DFTB-EDA will be capable of describing excited states of single, double, and mixed excitation character when spin-flip TD-DFTB is employed. 75 With further development of DFTB, improvements in the accuracy of DFTB-EDA can also be expected.…”
Section: Discussionmentioning
confidence: 99%
“…154 A spin-ip TDDFTB (SF-TDDFTB) method is developed to fast determine S 0 /S 1 minimum energy conical intersection (MECI) structures. 155 In 2019, Nakai and co-workers implemented a GPU-accelerated DC-TDDFTB method, which could reproduce the experimental absorption and uorescence spectra of 2-acetylindan-1,3-dione in explicit acetonitrile solution. 156 It is not straightforward to precisely compare the accurate and costs of various low scaling QM methods because there usually exist some adjustable parameters for achieving the balance between the accuracy and computational costs.…”
Section: Low Scaling Excited-state Quantum Mechanics and Quantum Dynamics Methodsmentioning
confidence: 99%
“… 154 A spin-flip TDDFTB (SF-TDDFTB) method is developed to fast determine S 0 /S 1 minimum energy conical intersection (MECI) structures. 155 In 2019, Nakai and co-workers implemented a GPU-accelerated DC-TDDFTB method, which could reproduce the experimental absorption and fluorescence spectra of 2-acetylindan-1,3-dione in explicit acetonitrile solution. 156 …”
Section: Low Scaling Qm Methods For Large-sized Molecules and Aggregatesmentioning
confidence: 99%
“…The gap error of 1.89 kcal/mol should be contrasted with the error of 15 kcal/mol in Ref. [9], which applied semi-empirical methods to azobenzene. The errors in the excited state forces are slightly larger, but still quite low.…”
Section: Validationmentioning
confidence: 99%
“…Many methods have been developed to alleviate this steep computational cost. Semi-empirical methods [8][9][10] provide qualitatively correct results across many systems, but are ultimately bounded by their approximations, with average energy errors of 15 kcal/mol [9]. Other approaches focus on hardware and software development [11,12], but cannot match the speed of semi-empirical methods.…”
mentioning
confidence: 99%