Issue 43, 2012

Anion binding induced conformational changes exploited for recognition, sensing and pseudorotaxane disassembly

Abstract

Investigations to exploit the anion binding induced conformational changes displayed by a new class of acyclic receptor for anion recognition, fluorescence sensing and pseudorotaxane disassembly are described. A series of imidazolium-appended bis-amide-pyridine, pyridine N-oxide and pyridinium containing receptors are synthesised and their anion binding properties elucidated using 1H NMR spectroscopy. Upon anion recognition, the receptors exhibit a substantial conformational change from an ‘open’ to a more ‘closed’ intramolecular geometry. The fluorescence anion sensing ability of a bis-pyrene-functionalised analogue is investigated, with anion-induced responses arising from excimer signalling mechanisms. A pseudorotaxane assembly formed between the pyridine N-oxide receptor acting as a threading component and an isophthalamide macrocycle is demonstrated to undergo disassembly resulting from the conformational behaviour exhibited by the thread upon chloride binding.

Graphical abstract: Anion binding induced conformational changes exploited for recognition, sensing and pseudorotaxane disassembly

Supplementary files

Article information

Article type
Paper
Submitted
23 Jul 2012
Accepted
05 Sep 2012
First published
06 Sep 2012

Dalton Trans., 2012,41, 13474-13485

Anion binding induced conformational changes exploited for recognition, sensing and pseudorotaxane disassembly

G. T. Spence, C. Chan, F. Szemes and P. D. Beer, Dalton Trans., 2012, 41, 13474 DOI: 10.1039/C2DT31640D

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