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A family of diastereomeric dodecanuclear coordination cages based on inversion of chirality of individual triangular cyclic helicate faces.
Argent, Stephen P; Jackson, Fiona C; Chan, Ho Man; Meyrick, Sam; Taylor, Christopher G P; Ronson, Tanya K; Rourke, Jonathan P; Ward, Michael D.
Afiliação
  • Argent SP; Department of Chemistry, University of Warwick Coventry CV4 7AL UK m.d.ward@warwick.ac.uk.
  • Jackson FC; School of Chemistry, University of Nottingham University Park Nottingham NG7 2RD UK stephen.argent@nottingham.ac.uk.
  • Chan HM; Department of Chemistry, University of Warwick Coventry CV4 7AL UK m.d.ward@warwick.ac.uk.
  • Meyrick S; Department of Chemistry, University of Warwick Coventry CV4 7AL UK m.d.ward@warwick.ac.uk.
  • Taylor CGP; Department of Chemistry, University of Warwick Coventry CV4 7AL UK m.d.ward@warwick.ac.uk.
  • Ronson TK; Department of Chemistry, University of Warwick Coventry CV4 7AL UK m.d.ward@warwick.ac.uk.
  • Rourke JP; University Chemistry Laboratory, University of Cambridge Lensfield Road Cambridge CB2 1EW UK.
  • Ward MD; School of Chemistry, Cardiff University Main Building, Park Place Cardiff CF10 3AT UK.
Chem Sci ; 11(37): 10167-10174, 2020 Sep 08.
Article em En | MEDLINE | ID: mdl-34094280
ABSTRACT
The dodecanuclear coordination cage [Cd12(Lnaph)12(Lmes)4](BF4)24 consists of a set of four triangular, trinuclear helical panels {Cd3(µ-Lnaph)3}6+ (based on ditopic bridging ligands Lnaph), which are connected by four tritopic ligands Lmes. The result is that the four triangular helical panels and the four Lmes-capped triangular faces of the cuboctahedral core form two alternating subsets of the eight triangular faces of the cuboctahedron. Crystallographic investigations revealed that the triangular helicate faces can have 'clockwise' (C) or 'anticlockwise' (A) helicity, and that the helicity of each face can vary independently of the others as they are mechanically separated. This generates a set of three diastereoisomers in which all four cyclic helicate faces in the cuboctahedron have the same chirality (AAAA/CCCC enantiomers with T symmetry; AAAC/CCCA enantiomers with C 3 symmetry; and achiral AACC with S 4 symmetry). This mirrors the known behaviour of many simpler M4L6 tetrahedral cages which can likewise exist as T, C 3 or S 4 isomers according to the sense of tris-chelate chirality around each individual metal centre but here it is translated onto a much larger scale by the four chiral units being entire trinuclear helicate faces rather than single metal centres. 1H NMR spectroscopy confirms the presence of the three diastereoisomers with their different molecular symmetries in a ratio slightly different from what is expected on purely statistical grounds; and 1H NMR measurements on a non-equilibrium sample (enriched by manual crystal-picking before preparing the solution) showed that the distribution does not change over several weeks in solution, indicating the kinetic inertness of the cage assemblies.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2020 Tipo de documento: Article