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Highly effective and reversible control of the rocking rates of rotaxanes by changes to the size of stimulus-responsive ring components
Authors:Hirose Keiji  Ishibashi Kazuaki  Shiba Yoshinobu  Doi Yasuko  Tobe Yoshito
Affiliation:Division of Frontier Materials Science, Graduate School of Engineering Science, Osaka University, 1-3 Machikaneyama, Toyonaka, Osaka 560-8531 (Japan). hirose@chem.es.osaka-u.ac.jp
Abstract:We have designed and synthesized rotaxanes whose rates of rocking motion (pendular motion) were switched reversibly through changes to the size of the ring component in response to external stimuli. The ring molecules of the rotaxanes incorporate a metaphenylene unit, which swings like a pendulum, and a dianthrylethane unit, which undergoes reversible isomerization in response to photo- and thermal stimuli and changes the size of the ring component. The rocking rates were estimated quantitatively by variable-temperature (VT) NMR spectroscopy and saturation transfer experiments, which revealed substantial changes in the rates between the open and closed forms, particularly in the case of rotaxanes with an isopropoxy group attached to a phenylene unit.
Keywords:crown compounds  molecular devices  rotaxanes  supramolecular chemistry
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