Molecular Borromean Rings

Kelly S. Chichak(California NanoSystems Institute), Stuart Cantrill(California NanoSystems Institute), Anthony R. Pease(California NanoSystems Institute), Sheng‐Hsien Chiu(California NanoSystems Institute), Gareth W. V. Cave(California NanoSystems Institute), Jerry L. Atwood(California NanoSystems Institute), J. Fraser Stoddart(California NanoSystems Institute)
Science
May 27, 2004
Cited by 812

Abstract

The realization of the Borromean link in a wholly synthetic molecular form is reported. The self-assembly of this link, which is topologically achiral, from 18 components by the template-directed formation of 12 imine and 30 dative bonds, associated with the coordination of three interlocked macrocycles, each tetranucleating and decadentate overall, to a total of six zinc(II) ions, is near quantitative. Three macrocycles present diagonally in pairs, six exo-bidentate bipyridyl and six endo-diiminopyridyl ligands to the six zinc(II) ions. The use, in concert, of coordination, supramolecular, and dynamic covalent chemistry allowed the highly efficient construction, by multiple cooperative self-assembly processes, of a nanoscale dodecacation with an approximate diameter of 2.5 nanometers and an inner chamber of volume 250 A(3), lined with 12 oxygen atoms.


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