Abstract
In this article, we use 1 H NMR spectroscopy to study the spontaneous molecular motion of donor-acceptor [2]catenanes in water. Our data supports the hypothesis that conformational motion dominantly occurs through a pirouetting mechanism, which involves less exposure of hydrophobic surfaces than in a rotation mechanism. Motion is controlled by the size of the catenane rings and the arrangement of the electron-deficient and electron-rich aromatic units.
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CITATION STYLE
Cougnon, F. B. L., Ponnuswamy, N., Pantoş, G. D., & Sanders, J. K. M. (2015). Molecular motion of donor-acceptor catenanes in water. Organic and Biomolecular Chemistry, 13(10), 2927–2930. https://doi.org/10.1039/c4ob02457e
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