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  4. Switchable Mesomorphic Materials Based on the Ferrocene−Ferrocenium Redox System:  Electron-Transfer-Generated Columnar Liquid-Crystalline Phases
 
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Switchable Mesomorphic Materials Based on the Ferrocene−Ferrocenium Redox System:  Electron-Transfer-Generated Columnar Liquid-Crystalline Phases

Auteur(s)
Deschenaux, Robert 
Institut de chimie 
Vilches, Maria-Teresa
Schweissguth, Martin
Levelut, Anne-Marie
Long, Gary J.
Hautot, Dimitri
Luneau, Dominique
Date de parution
1999
In
Organometallics, American Chemical Society (ACS), 1999/18/26/5553–5559
Résumé
Oxidation of the non-mesomorphic ferrocene derivative <b>1</b> with silver toluene-4-sulfonate gave the ferrocenium derivative <b>2</b>, which showed a monotropic columnar phase. The latter two-dimensional phase is composed of ribbons, in which derivative <b>2</b> is organized into bilayers, and has a centered rectangular symmetry with <i>a</i> = 318.3 Å and <i>c</i> = 94.9 Å. The Mössbauer spectra of the ferrocene derivative <b>1</b> yields hyperfine parameters that are typical of these derivatives and are, as expected, virtually independent of temperature. In a similar fashion, the hyperfine parameters of the ferrocenium derivative <b>2</b> are typical of these derivatives, but in this case at both 78 and 4.2 K slow paramagnetic relaxation of the magnetic moment associated with the rather well isolated paramagnetic ferrocenium ion is observed. The temperature-dependent magnetic susceptibilities of <b>2</b> are in agreement with those expected for weakly interacting ferrocenium cores. No magnetic-field-induced orientation was observed upon cooling the sample from the isotropic phase down to the columnar phase. Ferrocene and ferrocenium are valuable units for the design of liquid-crystalline switches.
Identifiants
https://libra.unine.ch/handle/123456789/4475
_
10.1021/om9905308
Type de publication
journal article
Dossier(s) à télécharger
 main article: Deschenaux_Robert_-_Switchable_Mesomorphic_Materials_Based_on_the_Ferrocene_20170622.pdf (761.49 KB)
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