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Highly stable tetrathiafulvalene radical dimers in [3]catenanes.

Authors :
Spruell JM
Coskun A
Friedman DC
Forgan RS
Sarjeant AA
Trabolsi A
Fahrenbach AC
Barin G
Paxton WF
Dey SK
Olson MA
Benítez D
Tkatchouk E
Colvin MT
Carmielli R
Caldwell ST
Rosair GM
Hewage SG
Duclairoir F
Seymour JL
Slawin AM
Goddard WA 3rd
Wasielewski MR
Cooke G
Stoddart JF
Source :
Nature chemistry [Nat Chem] 2010 Oct; Vol. 2 (10), pp. 870-9. Date of Electronic Publication: 2010 Jul 25.
Publication Year :
2010

Abstract

Two [3]catenane 'molecular flasks' have been designed to create stabilized, redox-controlled tetrathiafulvalene (TTF) dimers, enabling their spectrophotometric and structural properties to be probed in detail. The mechanically interlocked framework of the [3]catenanes creates the ideal arrangement and ultrahigh local concentration for the encircled TTF units to form stable dimers associated with their discrete oxidation states. These dimerization events represent an affinity umpolung, wherein the inversion in electronic affinity replaces the traditional TTF-bipyridinium interaction, which is over-ridden by stabilizing mixed-valence (TTF)2•+ and radical-cation (TTF•+)2 states inside the 'molecular flasks.' The experimental data, collected in the solid state as well as in solution under ambient conditions, together with supporting quantum mechanical calculations, are consistent with the formation of stabilized paramagnetic mixed-valence dimers, and then diamagnetic radical-cation dimers following subsequent one-electron oxidations of the [3]catenanes.

Subjects

Subjects :
Dimerization
Catenanes chemistry

Details

Language :
English
ISSN :
1755-4349
Volume :
2
Issue :
10
Database :
MEDLINE
Journal :
Nature chemistry
Publication Type :
Academic Journal
Accession number :
20861904
Full Text :
https://doi.org/10.1038/nchem.749