Lanthanide appended rotaxanes respond to changing chloride concentration
Lanthanide appended rotaxanes respond to changing chloride concentration
Lanthanide appended rotaxanes have been prepared by the CuAAC 'click' reaction between an azide appended rotaxane and lanthanide complexes of propargyl DO3A. The resulting complexes are luminescent, and exhibit chloride responsive luminescence behavior consistent with the existence of two independent halide binding pockets, one in the rotaxane cavity and one on the ninth (axial) coordination site of the lanthanide. Strong halide binding to europium gives rise to changes in the relative intensity of the hypersensitive ΔJ = 2 transition compared to the rest of the europium emission spectrum, combined with quenching of the overall intensity of emission as a consequence of non-radiative quenching by the bound halide. The weaker interaction with the rotaxane pocket mediates a subsequent recovery of intensity of the europium centered luminescence despite the considerable separation between the lanthanide and the rotaxane binding pocket. © 2013 The Royal Society of Chemistry.
489-493
Allain, Clémence
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Beer, Paul D.
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Faulkner, Stephen
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Jones, Michael W.
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Kenwright, Alan M.
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Kilah, Nathan L.
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Knighton, Richard C.
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Sørensen, Thomas Just
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Tropiano, Manuel
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Allain, Clémence
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Beer, Paul D.
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Faulkner, Stephen
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Jones, Michael W.
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Kenwright, Alan M.
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Kilah, Nathan L.
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Knighton, Richard C.
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Sørensen, Thomas Just
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Tropiano, Manuel
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Allain, Clémence, Beer, Paul D., Faulkner, Stephen, Jones, Michael W., Kenwright, Alan M., Kilah, Nathan L., Knighton, Richard C., Sørensen, Thomas Just and Tropiano, Manuel
(2012)
Lanthanide appended rotaxanes respond to changing chloride concentration.
Chemical Science, 4 (1), .
(doi:10.1039/c2sc21614k).
Abstract
Lanthanide appended rotaxanes have been prepared by the CuAAC 'click' reaction between an azide appended rotaxane and lanthanide complexes of propargyl DO3A. The resulting complexes are luminescent, and exhibit chloride responsive luminescence behavior consistent with the existence of two independent halide binding pockets, one in the rotaxane cavity and one on the ninth (axial) coordination site of the lanthanide. Strong halide binding to europium gives rise to changes in the relative intensity of the hypersensitive ΔJ = 2 transition compared to the rest of the europium emission spectrum, combined with quenching of the overall intensity of emission as a consequence of non-radiative quenching by the bound halide. The weaker interaction with the rotaxane pocket mediates a subsequent recovery of intensity of the europium centered luminescence despite the considerable separation between the lanthanide and the rotaxane binding pocket. © 2013 The Royal Society of Chemistry.
Text
c2sc21614k
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Accepted/In Press date: 22 October 2012
e-pub ahead of print date: 22 October 2012
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Local EPrints ID: 481982
URI: http://eprints.soton.ac.uk/id/eprint/481982
ISSN: 1478-6524
PURE UUID: e90cd352-87b4-40c5-ad9e-5abccb5ed565
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Date deposited: 14 Sep 2023 16:47
Last modified: 18 Mar 2024 04:15
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Contributors
Author:
Clémence Allain
Author:
Paul D. Beer
Author:
Stephen Faulkner
Author:
Michael W. Jones
Author:
Alan M. Kenwright
Author:
Nathan L. Kilah
Author:
Richard C. Knighton
Author:
Thomas Just Sørensen
Author:
Manuel Tropiano
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