volume 125 issue 49 pages 10532-10540

F12-TZ-cCR: A Methodology for Faster and Still Highly Accurate Quartic Force Fields

Publication typeJournal Article
Publication date2021-11-30
scimago Q2
wos Q2
SJR0.634
CiteScore4.8
Impact factor2.8
ISSN10895639, 15205215
Physical and Theoretical Chemistry
Abstract
The F12-TZ-cCR quartic force field (QFF) methodology, defined here as CCSD(T)-F12b/cc-pCVTZ-F12 with further corrections for relativity, is introduced as a cheaper and even more accurate alternative to more costly composite QFF methods like those containing complete basis set extrapolations within canonical coupled cluster theory. F12-TZ-cCR QFFs produce B0 and C0 vibrationally averaged principal rotational constants within 7.5 MHz of gas-phase experimental values for tetraatomic and larger molecules, offering higher accuracy in these constants than the previous composite methods. In addition, F12-TZ-cCR offers an order of magnitude decrease in the computational cost of highly accurate QFF methodologies accompanying this increase in accuracy. An additional order of magnitude in cost reduction is achieved in the F12-DZ-cCR method, while also matching the accuracy of the traditional composite method's B0 and C0 constants. Finally, F12-DZ and F12-TZ are benchmarked on the same test set, revealing that both methods can provide anharmonic vibrational frequencies that are comparable in accuracy to all three of the more expensive methodologies, although their rotational constants lag behind. Hence, the present work demonstrates that highly accurate theoretical rovibrational spectral data can be obtained for a fraction of the cost of conventional QFF methodologies, extending the applicability of QFFs to larger molecules.
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Watrous A. G., Westbrook B. R., Fortenberry R. C. F12-TZ-cCR: A Methodology for Faster and Still Highly Accurate Quartic Force Fields // Journal of Physical Chemistry A. 2021. Vol. 125. No. 49. pp. 10532-10540.
GOST all authors (up to 50) Copy
Watrous A. G., Westbrook B. R., Fortenberry R. C. F12-TZ-cCR: A Methodology for Faster and Still Highly Accurate Quartic Force Fields // Journal of Physical Chemistry A. 2021. Vol. 125. No. 49. pp. 10532-10540.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1021/acs.jpca.1c08355
UR - https://doi.org/10.1021/acs.jpca.1c08355
TI - F12-TZ-cCR: A Methodology for Faster and Still Highly Accurate Quartic Force Fields
T2 - Journal of Physical Chemistry A
AU - Watrous, Alexandria G
AU - Westbrook, Brent R
AU - Fortenberry, Ryan C.
PY - 2021
DA - 2021/11/30
PB - American Chemical Society (ACS)
SP - 10532-10540
IS - 49
VL - 125
PMID - 34846883
SN - 1089-5639
SN - 1520-5215
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2021_Watrous,
author = {Alexandria G Watrous and Brent R Westbrook and Ryan C. Fortenberry},
title = {F12-TZ-cCR: A Methodology for Faster and Still Highly Accurate Quartic Force Fields},
journal = {Journal of Physical Chemistry A},
year = {2021},
volume = {125},
publisher = {American Chemical Society (ACS)},
month = {nov},
url = {https://doi.org/10.1021/acs.jpca.1c08355},
number = {49},
pages = {10532--10540},
doi = {10.1021/acs.jpca.1c08355}
}
MLA
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MLA Copy
Watrous, Alexandria G., et al. “F12-TZ-cCR: A Methodology for Faster and Still Highly Accurate Quartic Force Fields.” Journal of Physical Chemistry A, vol. 125, no. 49, Nov. 2021, pp. 10532-10540. https://doi.org/10.1021/acs.jpca.1c08355.