Sparkle/PM7 Lanthanide Parameters for the Modeling of Complexes and Materials
Тип публикации: Journal Article
Дата публикации: 2013-07-17
scimago Q1
wos Q1
БС1
SJR: 1.482
CiteScore: 9.8
Impact factor: 5.5
ISSN: 15499618, 15499626
PubMed ID:
24163641
Physical and Theoretical Chemistry
Computer Science Applications
Краткое описание
The recently published Parametric Method number 7, PM7, is the first semiempirical method to be successfully tested by modeling crystal structures and heats of formation of solids. PM7 is thus also capable of producing results of useful accuracy for materials science, and constitutes a great improvement over its predecessor, PM6. In this article, we present Sparkle Model parameters to be used with PM7 that allow the prediction of geometries of metal complexes and materials which contain lanthanide trications. Accordingly, we considered the geometries of 224 high-quality crystallographic structures of complexes for the parameterization set and 395 more for the validation of the parameterization for the whole lanthanide series, from La(III) to Lu(III). The average unsigned error for Sparkle/PM7 for the distances between the metal ion and its coordinating atoms is 0.063Å for all lanthanides, ranging from a minimum of 0.052Å for Tb(III) to 0.088Å for Ce(III), comparable to the equivalent errors in the distances predicted by PM7 for other metals. These distance deviations follow a gamma distribution within a 95% level of confidence, signifying that they appear to be random around a mean, confirming that Sparkle/PM7 is a well-tempered method. We conclude by carrying out a Sparkle/PM7 full geometry optimization of two spatial groups of the same thulium-containing metal organic framework, with unit cells accommodating 376 atoms, of which 16 are Tm(III) cations; the optimized geometries were in good agreement with the crystallographic ones. These results emphasize the capability of the use of the Sparkle Model for the prediction of geometries of compounds containing lanthanide trications within the PM7 semiempirical model, as well as the usefulness of such semiempirical calculations for materials modeling. Sparkle/PM7 is available in the software package MOPAC2012, at no cost for academics and can be obtained from http://openmopac.net.
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Dutra J. et al. Sparkle/PM7 Lanthanide Parameters for the Modeling of Complexes and Materials // Journal of Chemical Theory and Computation. 2013. Vol. 9. No. 8. pp. 3333-3341.
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Dutra J., Filho M. A. M., Rocha G. B., Freire R., Simas A. M., Martínez-Núñez E. Sparkle/PM7 Lanthanide Parameters for the Modeling of Complexes and Materials // Journal of Chemical Theory and Computation. 2013. Vol. 9. No. 8. pp. 3333-3341.
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TY - JOUR
DO - 10.1021/ct301012h
UR - https://doi.org/10.1021/ct301012h
TI - Sparkle/PM7 Lanthanide Parameters for the Modeling of Complexes and Materials
T2 - Journal of Chemical Theory and Computation
AU - Dutra, José
AU - Filho, Manoel A M
AU - Rocha, Gerd B.
AU - Freire, Ricardo
AU - Simas, A. M.
AU - Martínez-Núñez, Emilio
PY - 2013
DA - 2013/07/17
PB - American Chemical Society (ACS)
SP - 3333-3341
IS - 8
VL - 9
PMID - 24163641
SN - 1549-9618
SN - 1549-9626
ER -
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@article{2013_Dutra,
author = {José Dutra and Manoel A M Filho and Gerd B. Rocha and Ricardo Freire and A. M. Simas and Emilio Martínez-Núñez},
title = {Sparkle/PM7 Lanthanide Parameters for the Modeling of Complexes and Materials},
journal = {Journal of Chemical Theory and Computation},
year = {2013},
volume = {9},
publisher = {American Chemical Society (ACS)},
month = {jul},
url = {https://doi.org/10.1021/ct301012h},
number = {8},
pages = {3333--3341},
doi = {10.1021/ct301012h}
}
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Dutra, José, et al. “Sparkle/PM7 Lanthanide Parameters for the Modeling of Complexes and Materials.” Journal of Chemical Theory and Computation, vol. 9, no. 8, Jul. 2013, pp. 3333-3341. https://doi.org/10.1021/ct301012h.