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Unusual Complexes of P(CH)(3) with FH, ClH, and ClF

Ab initio MP2/aug’-cc-pVTZ calculations have been performed to determine the structures and binding energies of complexes formed by phosphatetrahedrane, P(CH)(3), and HF, HCl, and ClF. Four types of complexes exist on the potential energy surfaces. Isomers A form at the P atom near the end of a P-C...

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Autores principales: Del Bene, Janet E., Alkorta, Ibon, Elguero, José
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7356268/
https://www.ncbi.nlm.nih.gov/pubmed/32575624
http://dx.doi.org/10.3390/molecules25122846
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author Del Bene, Janet E.
Alkorta, Ibon
Elguero, José
author_facet Del Bene, Janet E.
Alkorta, Ibon
Elguero, José
author_sort Del Bene, Janet E.
collection PubMed
description Ab initio MP2/aug’-cc-pVTZ calculations have been performed to determine the structures and binding energies of complexes formed by phosphatetrahedrane, P(CH)(3), and HF, HCl, and ClF. Four types of complexes exist on the potential energy surfaces. Isomers A form at the P atom near the end of a P-C bond, B at a C-C bond, C at the centroid of the C-C-C ring along the C(3) symmetry axis, and D at the P atom along the C(3) symmetry axis. Complexes A and B are stabilized by hydrogen bonds when FH and ClH are the acids, and by halogen bonds when ClF is the acid. In isomers C, the dipole moments of the two monomers are favorably aligned but in D the alignment is unfavorable. For each of the monomers, the binding energies of the complexes decrease in the order A > B > C > D. The most stabilizing Symmetry Adapted Perturbation Theory (SAPT) binding energy component for the A and B isomers is the electrostatic interaction, while the dispersion interaction is the most stabilizing term for C and D. The barriers to converting one isomer to another are significantly higher for the A isomers compared to B. Equation of motion coupled cluster singles and doubles (EOM-CCSD) intermolecular coupling constants J(X-C) are small for both B and C isomers. J(X-P) values are larger and positive in the A isomers, negative in the B isomers, and have their largest positive values in the D isomers. Intramolecular coupling constants (1)J(P-C) experience little change upon complex formation, except in the halogen-bonded complex FCl:P(CH(3)) A.
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spelling pubmed-73562682020-07-31 Unusual Complexes of P(CH)(3) with FH, ClH, and ClF Del Bene, Janet E. Alkorta, Ibon Elguero, José Molecules Article Ab initio MP2/aug’-cc-pVTZ calculations have been performed to determine the structures and binding energies of complexes formed by phosphatetrahedrane, P(CH)(3), and HF, HCl, and ClF. Four types of complexes exist on the potential energy surfaces. Isomers A form at the P atom near the end of a P-C bond, B at a C-C bond, C at the centroid of the C-C-C ring along the C(3) symmetry axis, and D at the P atom along the C(3) symmetry axis. Complexes A and B are stabilized by hydrogen bonds when FH and ClH are the acids, and by halogen bonds when ClF is the acid. In isomers C, the dipole moments of the two monomers are favorably aligned but in D the alignment is unfavorable. For each of the monomers, the binding energies of the complexes decrease in the order A > B > C > D. The most stabilizing Symmetry Adapted Perturbation Theory (SAPT) binding energy component for the A and B isomers is the electrostatic interaction, while the dispersion interaction is the most stabilizing term for C and D. The barriers to converting one isomer to another are significantly higher for the A isomers compared to B. Equation of motion coupled cluster singles and doubles (EOM-CCSD) intermolecular coupling constants J(X-C) are small for both B and C isomers. J(X-P) values are larger and positive in the A isomers, negative in the B isomers, and have their largest positive values in the D isomers. Intramolecular coupling constants (1)J(P-C) experience little change upon complex formation, except in the halogen-bonded complex FCl:P(CH(3)) A. MDPI 2020-06-19 /pmc/articles/PMC7356268/ /pubmed/32575624 http://dx.doi.org/10.3390/molecules25122846 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Del Bene, Janet E.
Alkorta, Ibon
Elguero, José
Unusual Complexes of P(CH)(3) with FH, ClH, and ClF
title Unusual Complexes of P(CH)(3) with FH, ClH, and ClF
title_full Unusual Complexes of P(CH)(3) with FH, ClH, and ClF
title_fullStr Unusual Complexes of P(CH)(3) with FH, ClH, and ClF
title_full_unstemmed Unusual Complexes of P(CH)(3) with FH, ClH, and ClF
title_short Unusual Complexes of P(CH)(3) with FH, ClH, and ClF
title_sort unusual complexes of p(ch)(3) with fh, clh, and clf
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7356268/
https://www.ncbi.nlm.nih.gov/pubmed/32575624
http://dx.doi.org/10.3390/molecules25122846
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