Logo du site
  • English
  • Français
  • Se connecter
Logo du site
  • English
  • Français
  • Se connecter
  1. Accueil
  2. Université de Neuchâtel
  3. Publications
  4. Host-Guest Chemistry in the Hexanuclear (Arene)ruthenium Metalla-Prismatic Cage [Ru<sub>6</sub>(<i>p</i>-cymene)<sub>6</sub>(tpt)<sub>2</sub>(dhnq)<sub>3</sub>]<sup>6+</sup>
 
  • Details
Options
Vignette d'image

Host-Guest Chemistry in the Hexanuclear (Arene)ruthenium Metalla-Prismatic Cage [Ru<sub>6</sub>(<i>p</i>-cymene)<sub>6</sub>(tpt)<sub>2</sub>(dhnq)<sub>3</sub>]<sup>6+</sup>

Auteur(s)
Barry, Nicolas P.E.
Therrien, Bruno 
Institut de chimie 
Date de parution
2009
In
European Journal of Inorganic Chemistry, Wiley, 2009/31//4695-4700
Mots-clés
  • Arenes
  • Host-guest systems
  • Carceplex
  • Ruthenium
  • Supramolecular chemistry
  • Arenes

  • Host-guest systems

  • Carceplex

  • Ruthenium

  • Supramolecular chemis...

Résumé
A large cationic triangular metalla-prism, [Ru<sub>6</sub>(<i>p</i>-cymene)<sub>6</sub>(tpt)<sub>2</sub>(dhnq)<sub>3</sub>]<sup>6+</sup> ([<b>1</b>]<sup>6+</sup>), incorporating (<i>p</i>-cymene)ruthenium building blocks, bridged by 5,8-dihydroxy-1,4-naphthoquinonato (dhnq) ligands, and connected by two 2,4,6-tri(pyridin-4-yl)-1,3,5-triazine (tpt) subunits, allows encapsulation of various guest molecules. This cationic cage, isolated as its triflate salt, possesses a portal size smaller than its cavity, thus allowing both, permanent and temporary encapsulation of guest molecules. The host-guest properties of [<b>1</b>]<sup>6+</sup> have been studied in solution in the presence of planar molecules [phenanthrene, pyrene, (pyren-1-ylmethyl)amine, Pt(acac)<sub>2</sub>, triphenylene]. The stability constant of association (<i>K</i><sub>a</sub>) was estimated by NMR spectroscopy for the following host-guest systems: [pyrene<b>1</b>]<sup>6+</sup>, [phenanthrene<b>1</b>]<sup>6+</sup> and [(pyren-1-ylmethyl)amine<b>1</b>]<sup>6+</sup>. All <i>K</i><sub>a</sub> values were found to be larger than 2.4 × 10<sup>4</sup> M<sup>-1</sup> for these host-guest systems ([D<sub>3</sub>]acetonitrile, 21 °C). The other two synthesised complexes, [Pt(acac)<sub>2</sub><b>1</b>]<sup>6+</sup> and [triphenylene<b>1</b>]<sup>6+</sup>, were shown to act as carceplexes only.A large cationic triangular metalla-prism, [Ru<sub>6</sub>(<i>p</i>-cymene)<sub>6</sub>(tpt)<sub>2</sub>(dhnq)<sub>3</sub>]<sup>6+</sup> ([<b>1</b>]<sup>6+</sup>), incorporating (<i>p</i>-cymene)ruthenium building blocks, bridged by 5,8-dihydroxy-1,4-naphthoquinonato (dhnq) ligands, and connected by two 2,4,6-tri(pyridin-4-yl)-1,3,5-triazine (tpt) subunits, allows encapsulation of various guest molecules. This cationic cage, isolated as its triflate salt, possesses a portal size smaller than its cavity, thus allowing both, permanent and temporary encapsulation of guest molecules. The host-guest properties of [<b>1</b>]<sup>6+</sup> have been studied in solution in the presence of planar molecules [phenanthrene, pyrene, (pyren-1-ylmethyl)amine, Pt(acac)<sub>2</sub>, triphenylene]. The stability constant of association (<i>K</i><sub>a</sub>) was estimated by NMR spectroscopy for the following host-guest systems: [pyrene<b>1</b>]<sup>6+</sup>, [phenanthrene<b>1</b>]<sup>6+</sup> and [(pyren-1-ylmethyl)amine<b>1</b>]<sup>6+</sup>. All <i>K</i><sub>a</sub> values were found to be larger than 2.4 × 10<sup>4</sup> M<sup>-1</sup> for these host-guest systems ([D<sub>3</sub>]acetonitrile, 21 °C). The other two synthesised complexes, [Pt(acac)<sub>2</sub><b>1</b>]<sup>6+</sup> and [triphenylene<b>1</b>]<sup>6+</sup>, were shown to act as carceplexes only.
Identifiants
https://libra.unine.ch/handle/123456789/14344
_
10.1002/ejic.200900649
Type de publication
journal article
Dossier(s) à télécharger
 main article: Barry_Nicolas_P._E._-_Host-Guest_Chemistry_in_the_Hexanuclear_Arene_20100225.pdf (563.32 KB)
google-scholar
Présentation du portailGuide d'utilisationStratégie Open AccessDirective Open Access La recherche à l'UniNE Open Access ORCIDNouveautés

Service information scientifique & bibliothèques
Rue Emile-Argand 11
2000 Neuchâtel
contact.libra@unine.ch

Propulsé par DSpace, DSpace-CRIS & 4Science | v2022.02.00