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Comparison of group 4 and thorium M(iv) substituted cyclopentadienyl silanide complexes
We report the synthesis and characterisation of a series of M(iv) substituted cyclopentadienyl hypersilanide complexes of the general formula [M(Cp(R))(2){Si(SiMe(3))(3)}(X)] (M = Hf, Th; Cp(R) = Cp′, {C(5)H(4)(SiMe(3))} or Cp′′, {C(5)H(3)(SiMe(3))(2)-1,3}; X = Cl, C(3)H(5)). The separate salt metat...
Autores principales: | , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
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The Royal Society of Chemistry
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10242453/ https://www.ncbi.nlm.nih.gov/pubmed/37199085 http://dx.doi.org/10.1039/d3dt00987d |
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author | Réant, Benjamin L. L. De Alwis Jayasinghe, Dukula Wooles, Ashley J. Liddle, Stephen T. Mills, David P. |
author_facet | Réant, Benjamin L. L. De Alwis Jayasinghe, Dukula Wooles, Ashley J. Liddle, Stephen T. Mills, David P. |
author_sort | Réant, Benjamin L. L. |
collection | PubMed |
description | We report the synthesis and characterisation of a series of M(iv) substituted cyclopentadienyl hypersilanide complexes of the general formula [M(Cp(R))(2){Si(SiMe(3))(3)}(X)] (M = Hf, Th; Cp(R) = Cp′, {C(5)H(4)(SiMe(3))} or Cp′′, {C(5)H(3)(SiMe(3))(2)-1,3}; X = Cl, C(3)H(5)). The separate salt metathesis reactions of [M(Cp(R))(2)(Cl)(2)] (M = Zr or Hf, Cp(R) = Cp′; M = Hf or Th, Cp(R) = Cp′′) with equimolar K{Si(SiMe(3))(3)} gave the respective mono-silanide complexes [M(Cp′)(2){Si(SiMe(3))(3)}(Cl)] (M = Zr, 1; Hf, 2), [Hf(Cp′′)(Cp′){Si(SiMe(3))(3)}(Cl)] (3) and [Th(Cp′′)(2){Si(SiMe(3))(3)}(Cl)] (4), with only a trace amount of 3 presumably formed via silatropic and sigmatropic shifts; the synthesis of 1 from [Zr(Cp′)(2)(Cl)(2)] and Li{Si(SiMe(3))(3)} has been reported previously. The salt elimination reaction of 2 with one equivalent of allylmagnesium chloride gave [Hf(Cp′)(2){Si(SiMe(3))(3)}(η(3)-C(3)H(5))] (5), whilst the corresponding reaction of 2 with equimolar benzyl potassium yielded [Hf(Cp′)(2)(CH(2)Ph)(2)] (6) together with a mixture of other products, with elimination of both KCl and K{Si(SiMe(3))(3)}. Attempts to prepare isolated [M(Cp(R))(2){Si(SiMe(3))(3)}](+) cations from 4 or 5 by standard abstraction methodologies were unsuccessful. The reduction of 4 with KC(8) gave the known Th(iii) complex, [Th(Cp′′)(3)]. Complexes 2–6 were characterised by single crystal XRD, whilst 2, 4 and 5 were additionally characterised by (1)H, (13)C{(1)H} and (29)Si{(1)H} NMR spectroscopy, ATR-IR spectroscopy and elemental analysis. In order to probe differences in M(iv)–Si bonds for d- and f-block metals we studied the electronic structures of 1–5 by density functional theory calculations, showing M–Si bonds of similar covalency for Zr(iv) and Hf(iv), and less covalent M–Si bonds for Th(iv). |
format | Online Article Text |
id | pubmed-10242453 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | The Royal Society of Chemistry |
record_format | MEDLINE/PubMed |
spelling | pubmed-102424532023-06-07 Comparison of group 4 and thorium M(iv) substituted cyclopentadienyl silanide complexes Réant, Benjamin L. L. De Alwis Jayasinghe, Dukula Wooles, Ashley J. Liddle, Stephen T. Mills, David P. Dalton Trans Chemistry We report the synthesis and characterisation of a series of M(iv) substituted cyclopentadienyl hypersilanide complexes of the general formula [M(Cp(R))(2){Si(SiMe(3))(3)}(X)] (M = Hf, Th; Cp(R) = Cp′, {C(5)H(4)(SiMe(3))} or Cp′′, {C(5)H(3)(SiMe(3))(2)-1,3}; X = Cl, C(3)H(5)). The separate salt metathesis reactions of [M(Cp(R))(2)(Cl)(2)] (M = Zr or Hf, Cp(R) = Cp′; M = Hf or Th, Cp(R) = Cp′′) with equimolar K{Si(SiMe(3))(3)} gave the respective mono-silanide complexes [M(Cp′)(2){Si(SiMe(3))(3)}(Cl)] (M = Zr, 1; Hf, 2), [Hf(Cp′′)(Cp′){Si(SiMe(3))(3)}(Cl)] (3) and [Th(Cp′′)(2){Si(SiMe(3))(3)}(Cl)] (4), with only a trace amount of 3 presumably formed via silatropic and sigmatropic shifts; the synthesis of 1 from [Zr(Cp′)(2)(Cl)(2)] and Li{Si(SiMe(3))(3)} has been reported previously. The salt elimination reaction of 2 with one equivalent of allylmagnesium chloride gave [Hf(Cp′)(2){Si(SiMe(3))(3)}(η(3)-C(3)H(5))] (5), whilst the corresponding reaction of 2 with equimolar benzyl potassium yielded [Hf(Cp′)(2)(CH(2)Ph)(2)] (6) together with a mixture of other products, with elimination of both KCl and K{Si(SiMe(3))(3)}. Attempts to prepare isolated [M(Cp(R))(2){Si(SiMe(3))(3)}](+) cations from 4 or 5 by standard abstraction methodologies were unsuccessful. The reduction of 4 with KC(8) gave the known Th(iii) complex, [Th(Cp′′)(3)]. Complexes 2–6 were characterised by single crystal XRD, whilst 2, 4 and 5 were additionally characterised by (1)H, (13)C{(1)H} and (29)Si{(1)H} NMR spectroscopy, ATR-IR spectroscopy and elemental analysis. In order to probe differences in M(iv)–Si bonds for d- and f-block metals we studied the electronic structures of 1–5 by density functional theory calculations, showing M–Si bonds of similar covalency for Zr(iv) and Hf(iv), and less covalent M–Si bonds for Th(iv). The Royal Society of Chemistry 2023-05-12 /pmc/articles/PMC10242453/ /pubmed/37199085 http://dx.doi.org/10.1039/d3dt00987d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/ |
spellingShingle | Chemistry Réant, Benjamin L. L. De Alwis Jayasinghe, Dukula Wooles, Ashley J. Liddle, Stephen T. Mills, David P. Comparison of group 4 and thorium M(iv) substituted cyclopentadienyl silanide complexes |
title | Comparison of group 4 and thorium M(iv) substituted cyclopentadienyl silanide complexes |
title_full | Comparison of group 4 and thorium M(iv) substituted cyclopentadienyl silanide complexes |
title_fullStr | Comparison of group 4 and thorium M(iv) substituted cyclopentadienyl silanide complexes |
title_full_unstemmed | Comparison of group 4 and thorium M(iv) substituted cyclopentadienyl silanide complexes |
title_short | Comparison of group 4 and thorium M(iv) substituted cyclopentadienyl silanide complexes |
title_sort | comparison of group 4 and thorium m(iv) substituted cyclopentadienyl silanide complexes |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10242453/ https://www.ncbi.nlm.nih.gov/pubmed/37199085 http://dx.doi.org/10.1039/d3dt00987d |
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