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Controlled scrambling reactions to polyphosphanes via bond metathesis reactions

Triphosphanes R′(2)PP(R)PR′(2) (9a,c: R = Py; 9b R = BTz), 1,3-diphenyl-2-pyridyl-triphospholane 9d and pentaphospholanes (RP)(5) (13: R = Py; 18: R = BTz) are obtained in high yield of up to 98% from the reaction of dipyrazolylphosphanes RPpyr(2) (5: R = Py; 6: R = BTz; pyr = 1,3-dimethylpyrazolyl)...

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Autores principales: Schoemaker, Robin, Schwedtmann, Kai, Franconetti, Antonio, Frontera, Antonio, Hennersdorf, Felix, Weigand, Jan J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7066665/
https://www.ncbi.nlm.nih.gov/pubmed/32190255
http://dx.doi.org/10.1039/c9sc04501e
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author Schoemaker, Robin
Schwedtmann, Kai
Franconetti, Antonio
Frontera, Antonio
Hennersdorf, Felix
Weigand, Jan J.
author_facet Schoemaker, Robin
Schwedtmann, Kai
Franconetti, Antonio
Frontera, Antonio
Hennersdorf, Felix
Weigand, Jan J.
author_sort Schoemaker, Robin
collection PubMed
description Triphosphanes R′(2)PP(R)PR′(2) (9a,c: R = Py; 9b R = BTz), 1,3-diphenyl-2-pyridyl-triphospholane 9d and pentaphospholanes (RP)(5) (13: R = Py; 18: R = BTz) are obtained in high yield of up to 98% from the reaction of dipyrazolylphosphanes RPpyr(2) (5: R = Py; 6: R = BTz; pyr = 1,3-dimethylpyrazolyl) and the respective secondary phosphane (R′(2)PH, R′ = Cy (9a,b), (t)Bu (9c); PhPH(CH(2))(2)PHPh (9d)). The formation of derivatives 9a–d proceeds via a condensation reaction while the formation of 13 and 18 can only be explained by a selective scrambling reaction. We realized that the reaction outcome is strongly solvent dependent as outlined by the controlled scrambling reaction pathway towards pentaphospholane 13. In our further investigations to apply these compounds as ligands we first confined ourselves to the coordination chemistry of triphosphane 9a with respect to coinage metal salts and discussed the observation of different syn- and anti-isomeric metal complexes based on NMR and X-ray analyses as well as quantum chemical calculations. Methylation reactions of 9a with MeOTf yield triphosphan-1-ium Cy(2)MePP(Py)PCy(2)(+) (10(+)) and triphosphane-1,3-diium Cy(2)MePP(Py)PMeCy(2)(2+) (11(2+)) cations as triflate salts. Salt 11[OTf](2) reacts with pentaphospholane 13 in an unprecedented chain growth reaction to give the tetraphosphane-1,4-diium triflate salt Cy(2)MePP(Py)P(Py)PMeCy(2)(2+) (19[OTf](2)) via a P–P/P–P bond metathesis reaction. The latter salt is unstable in solution and rearranges via a rare [1,2]-migration of the Cy(2)MeP-group followed by the elimination of the triphosph-2-en-1-ium cation [Cy(2)MePPPMeCy(2)](+) (20(+)) to yield a novel 1,4,2-diazaphospholium salt (21[OTf]).
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spelling pubmed-70666652020-03-18 Controlled scrambling reactions to polyphosphanes via bond metathesis reactions Schoemaker, Robin Schwedtmann, Kai Franconetti, Antonio Frontera, Antonio Hennersdorf, Felix Weigand, Jan J. Chem Sci Chemistry Triphosphanes R′(2)PP(R)PR′(2) (9a,c: R = Py; 9b R = BTz), 1,3-diphenyl-2-pyridyl-triphospholane 9d and pentaphospholanes (RP)(5) (13: R = Py; 18: R = BTz) are obtained in high yield of up to 98% from the reaction of dipyrazolylphosphanes RPpyr(2) (5: R = Py; 6: R = BTz; pyr = 1,3-dimethylpyrazolyl) and the respective secondary phosphane (R′(2)PH, R′ = Cy (9a,b), (t)Bu (9c); PhPH(CH(2))(2)PHPh (9d)). The formation of derivatives 9a–d proceeds via a condensation reaction while the formation of 13 and 18 can only be explained by a selective scrambling reaction. We realized that the reaction outcome is strongly solvent dependent as outlined by the controlled scrambling reaction pathway towards pentaphospholane 13. In our further investigations to apply these compounds as ligands we first confined ourselves to the coordination chemistry of triphosphane 9a with respect to coinage metal salts and discussed the observation of different syn- and anti-isomeric metal complexes based on NMR and X-ray analyses as well as quantum chemical calculations. Methylation reactions of 9a with MeOTf yield triphosphan-1-ium Cy(2)MePP(Py)PCy(2)(+) (10(+)) and triphosphane-1,3-diium Cy(2)MePP(Py)PMeCy(2)(2+) (11(2+)) cations as triflate salts. Salt 11[OTf](2) reacts with pentaphospholane 13 in an unprecedented chain growth reaction to give the tetraphosphane-1,4-diium triflate salt Cy(2)MePP(Py)P(Py)PMeCy(2)(2+) (19[OTf](2)) via a P–P/P–P bond metathesis reaction. The latter salt is unstable in solution and rearranges via a rare [1,2]-migration of the Cy(2)MeP-group followed by the elimination of the triphosph-2-en-1-ium cation [Cy(2)MePPPMeCy(2)](+) (20(+)) to yield a novel 1,4,2-diazaphospholium salt (21[OTf]). Royal Society of Chemistry 2019-10-17 /pmc/articles/PMC7066665/ /pubmed/32190255 http://dx.doi.org/10.1039/c9sc04501e Text en This journal is © The Royal Society of Chemistry 2019 https://creativecommons.org/licenses/by-nc/3.0/This article is freely available. This article is licensed under a Creative Commons Attribution Non Commercial 3.0 Unported Licence (CC BY-NC 3.0)
spellingShingle Chemistry
Schoemaker, Robin
Schwedtmann, Kai
Franconetti, Antonio
Frontera, Antonio
Hennersdorf, Felix
Weigand, Jan J.
Controlled scrambling reactions to polyphosphanes via bond metathesis reactions
title Controlled scrambling reactions to polyphosphanes via bond metathesis reactions
title_full Controlled scrambling reactions to polyphosphanes via bond metathesis reactions
title_fullStr Controlled scrambling reactions to polyphosphanes via bond metathesis reactions
title_full_unstemmed Controlled scrambling reactions to polyphosphanes via bond metathesis reactions
title_short Controlled scrambling reactions to polyphosphanes via bond metathesis reactions
title_sort controlled scrambling reactions to polyphosphanes via bond metathesis reactions
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7066665/
https://www.ncbi.nlm.nih.gov/pubmed/32190255
http://dx.doi.org/10.1039/c9sc04501e
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