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Controlled Diffusion of Photoswitchable Receptors by Binding Anti-electrostatic Hydrogen-Bonded Phosphate Oligomers.


ABSTRACT: Dihydrogen phosphate anions are found to spontaneously associate into anti-electrostatic oligomers via hydrogen bonding interactions at millimolar concentrations in DMSO. Diffusion NMR measurements supported formation of these oligomers, which can be bound by photoswitchable anion receptors to form large bridged assemblies of approximately three times the volume of the unbound receptor. Photoisomerization of the oligomer-bound receptor causes a decrease in diffusion coefficient of up to 16%, corresponding to a 70% increase in effective volume. This new approach to external control of diffusion opens prospects in controlling molecular transport using light.

SUBMITTER: MacDonald TSC 

PROVIDER: S-EPMC7735709 | biostudies-literature | 2020 Nov

REPOSITORIES: biostudies-literature

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Controlled Diffusion of Photoswitchable Receptors by Binding Anti-electrostatic Hydrogen-Bonded Phosphate Oligomers.

MacDonald Thomas S C TSC   Feringa Ben L BL   Price William S WS   Wezenberg Sander J SJ   Beves Jonathon E JE  

Journal of the American Chemical Society 20201112 47


Dihydrogen phosphate anions are found to spontaneously associate into anti-electrostatic oligomers <i>via</i> hydrogen bonding interactions at millimolar concentrations in DMSO. Diffusion NMR measurements supported formation of these oligomers, which can be bound by photoswitchable anion receptors to form large bridged assemblies of approximately three times the volume of the unbound receptor. Photoisomerization of the oligomer-bound receptor causes a decrease in diffusion coefficient of up to 1  ...[more]

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