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Conformationally-locked metallomacrocycles-prototypes for a novel type of axial chirality
JournalArticle (Originalarbeit in einer wissenschaftlichen Zeitschrift)
 
ID 94243
Author(s) Chow, Hoi Shan; Constable, Edwin C.; Frantz, Richard; Housecroft, Catherine E.; Lacour, Jérôme; Neuburger, Markus; Rappoport, Dmitrij; Schaffner, Silvia
Author(s) at UniBasel Constable, Edwin Charles
Housecroft, Catherine
Neuburger, Markus
Year 2009
Title Conformationally-locked metallomacrocycles-prototypes for a novel type of axial chirality
Journal New Journal of Chemistry
Volume 33
Number 2
Pages / Article-Number 376-385
Keywords outer-sphere complexation; density-functional theory; gaussian-basis sets; trisphat anions; metal-complexes; tris(diimine)ruthenium(ii) complexes; supramolecular stereocontrol; hexacoordinated phosphates; coordination-compounds; cu(i) complexes
Abstract A series of ditopic ligands incorporating two 2,2':6',2 ''-terpyridine (tpy) metal-binding domains linked to a central naphthalenediyl core by ethyleneoxy chains of various lengths have been prepared and their iron(II) complexes prepared. The major thermodynamic products of complexation are ferracycles of [1 + 1], [2 + 2] or [3 + 3] stoichiometry. In the case of the [1 + 1] complexes, the linker between the two tpy domains is spatially restricted and the cations exhibit chirality associated with the conformation about the central N-Fe-N bonds. The dynamic processes by which the enantiomeric forms interconvert are investigated in the presence of chiral anions by NMR and circular dichroism spectroscopy making use of the Pfeiffer effect. We have shown that ditopic bis(2,2':6',2 ''-terpyridine) ligands give rise to conformationally restricted complexes with iron(II) centres. The absolute configuration of the cations in the diastereomeric ion pairs obtained through the Pfeiffer effect has been calculated using TDDFT methods.
Publisher Royal Society of Chemistry
ISSN/ISBN 1144-0546 ; 1369-9261
edoc-URL http://edoc.unibas.ch/dok/A5251511
Full Text on edoc No
Digital Object Identifier DOI 10.1039/B819588a
ISI-Number 000263113200016
Document type (ISI) Article
 
   

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