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Trimerization and cyclization of reactive P-functionalities confined within OCO pincers

In order to stabilize a 10–P–3 species with C(2v) symmetry and two lone pairs on the central phosphorus atom, a specialized ligand is required. Using an NCN pincer, previous efforts to enforce this planarized geometry at P resulted in the formation of a C(s)-symmetric, 10π-electron benzazaphosphole...

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Autores principales: Chinen, Beatrice L., Hyvl, Jakub, Brayton, Daniel F., Riek, Matthew M., Yoshida, Wesley Y., Chapp, Timothy W., Rheingold, Arnold L., Cain, Matthew F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9038090/
https://www.ncbi.nlm.nih.gov/pubmed/35478534
http://dx.doi.org/10.1039/d1ra05926b
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author Chinen, Beatrice L.
Hyvl, Jakub
Brayton, Daniel F.
Riek, Matthew M.
Yoshida, Wesley Y.
Chapp, Timothy W.
Rheingold, Arnold L.
Cain, Matthew F.
author_facet Chinen, Beatrice L.
Hyvl, Jakub
Brayton, Daniel F.
Riek, Matthew M.
Yoshida, Wesley Y.
Chapp, Timothy W.
Rheingold, Arnold L.
Cain, Matthew F.
author_sort Chinen, Beatrice L.
collection PubMed
description In order to stabilize a 10–P–3 species with C(2v) symmetry and two lone pairs on the central phosphorus atom, a specialized ligand is required. Using an NCN pincer, previous efforts to enforce this planarized geometry at P resulted in the formation of a C(s)-symmetric, 10π-electron benzazaphosphole that existed as a dynamic “bell-clapper” in solution. Here, OCO pincers 1 and 2 were synthesized, operating under the hypothesis that the more electron-withdrawing oxygen donors would better stabilize the 3-center, 4-electron O–P–O bond of the 10–P–3 target and the sp(3)-hybridized benzylic carbon atoms would prevent the formation of aromatic P-heterocycles. However, subjecting 1 to a metalation/phosphination/reduction sequence afforded cyclotriphosphane 3, resulting from trimerization of the P(i) center unbound by its oxygen donors. Pincer 2 featuring four benzylic CF(3) groups was expected to strengthen the O–P–O bond of the target, but after metal–halogen exchange and quenching with PCl(3), unexpected cyclization with loss of CH(3)Cl was observed to give monochlorinated 5. Treatment of 5 with (p-CH(3))C(6)H(4)MgBr generated crystalline P-(p-Tol) derivative 6, which was characterized by NMR spectroscopy, elemental analysis, and X-ray crystallography. The complex (19)F NMR spectra of 5 and 6 observed experimentally, were reproduced by simulations with MestreNova.
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spelling pubmed-90380902022-04-26 Trimerization and cyclization of reactive P-functionalities confined within OCO pincers Chinen, Beatrice L. Hyvl, Jakub Brayton, Daniel F. Riek, Matthew M. Yoshida, Wesley Y. Chapp, Timothy W. Rheingold, Arnold L. Cain, Matthew F. RSC Adv Chemistry In order to stabilize a 10–P–3 species with C(2v) symmetry and two lone pairs on the central phosphorus atom, a specialized ligand is required. Using an NCN pincer, previous efforts to enforce this planarized geometry at P resulted in the formation of a C(s)-symmetric, 10π-electron benzazaphosphole that existed as a dynamic “bell-clapper” in solution. Here, OCO pincers 1 and 2 were synthesized, operating under the hypothesis that the more electron-withdrawing oxygen donors would better stabilize the 3-center, 4-electron O–P–O bond of the 10–P–3 target and the sp(3)-hybridized benzylic carbon atoms would prevent the formation of aromatic P-heterocycles. However, subjecting 1 to a metalation/phosphination/reduction sequence afforded cyclotriphosphane 3, resulting from trimerization of the P(i) center unbound by its oxygen donors. Pincer 2 featuring four benzylic CF(3) groups was expected to strengthen the O–P–O bond of the target, but after metal–halogen exchange and quenching with PCl(3), unexpected cyclization with loss of CH(3)Cl was observed to give monochlorinated 5. Treatment of 5 with (p-CH(3))C(6)H(4)MgBr generated crystalline P-(p-Tol) derivative 6, which was characterized by NMR spectroscopy, elemental analysis, and X-ray crystallography. The complex (19)F NMR spectra of 5 and 6 observed experimentally, were reproduced by simulations with MestreNova. The Royal Society of Chemistry 2021-08-25 /pmc/articles/PMC9038090/ /pubmed/35478534 http://dx.doi.org/10.1039/d1ra05926b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Chinen, Beatrice L.
Hyvl, Jakub
Brayton, Daniel F.
Riek, Matthew M.
Yoshida, Wesley Y.
Chapp, Timothy W.
Rheingold, Arnold L.
Cain, Matthew F.
Trimerization and cyclization of reactive P-functionalities confined within OCO pincers
title Trimerization and cyclization of reactive P-functionalities confined within OCO pincers
title_full Trimerization and cyclization of reactive P-functionalities confined within OCO pincers
title_fullStr Trimerization and cyclization of reactive P-functionalities confined within OCO pincers
title_full_unstemmed Trimerization and cyclization of reactive P-functionalities confined within OCO pincers
title_short Trimerization and cyclization of reactive P-functionalities confined within OCO pincers
title_sort trimerization and cyclization of reactive p-functionalities confined within oco pincers
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9038090/
https://www.ncbi.nlm.nih.gov/pubmed/35478534
http://dx.doi.org/10.1039/d1ra05926b
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