Strong and selective halide anion binding by neutral halogen bonding [2]rotaxanes in wet organic solvents.

The design and construction of neutral interlocked host molecules for anion recognition are rare. Using an active-metal template approach, the preparation of a family of neutral halogen bonding rotaxanes containing two, three and four iodotriazole groups integrated into the macrocycle and axle compo...

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Main Authors: Lim, J, Bunchuay, T, Beer, P
Format: Journal article
Language:English
Published: Wiley 2017
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author Lim, J
Bunchuay, T
Beer, P
author_facet Lim, J
Bunchuay, T
Beer, P
author_sort Lim, J
collection OXFORD
description The design and construction of neutral interlocked host molecules for anion recognition are rare. Using an active-metal template approach, the preparation of a family of neutral halogen bonding rotaxanes containing two, three and four iodotriazole groups integrated into the macrocycle and axle components is achieved. In spite of the interlocked hosts’ neutrality, such rotaxane systems are capable of binding halide anions strongly and selectively in wet organic solvent mixtures. Importantly, halide binding strength and selectivity can be modulated by varying the number and position of the halogen bond-donor iodotriazole groups within the interlocked cavity; the rotaxane containing the largest number of halogen bond donor groups exhibits the highest halide anion binding affinities. Through solvent medium percentage water content variation, neutral XB donor-mediated anion binding strength is also demonstrated to be highly sensitive to solvent polarity.
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spelling oxford-uuid:18d95d41-1573-42e6-9581-5666b0c6c79a2022-03-26T10:45:31ZStrong and selective halide anion binding by neutral halogen bonding [2]rotaxanes in wet organic solvents.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:18d95d41-1573-42e6-9581-5666b0c6c79aEnglishSymplectic Elements at OxfordWiley2017Lim, JBunchuay, TBeer, PThe design and construction of neutral interlocked host molecules for anion recognition are rare. Using an active-metal template approach, the preparation of a family of neutral halogen bonding rotaxanes containing two, three and four iodotriazole groups integrated into the macrocycle and axle components is achieved. In spite of the interlocked hosts’ neutrality, such rotaxane systems are capable of binding halide anions strongly and selectively in wet organic solvent mixtures. Importantly, halide binding strength and selectivity can be modulated by varying the number and position of the halogen bond-donor iodotriazole groups within the interlocked cavity; the rotaxane containing the largest number of halogen bond donor groups exhibits the highest halide anion binding affinities. Through solvent medium percentage water content variation, neutral XB donor-mediated anion binding strength is also demonstrated to be highly sensitive to solvent polarity.
spellingShingle Lim, J
Bunchuay, T
Beer, P
Strong and selective halide anion binding by neutral halogen bonding [2]rotaxanes in wet organic solvents.
title Strong and selective halide anion binding by neutral halogen bonding [2]rotaxanes in wet organic solvents.
title_full Strong and selective halide anion binding by neutral halogen bonding [2]rotaxanes in wet organic solvents.
title_fullStr Strong and selective halide anion binding by neutral halogen bonding [2]rotaxanes in wet organic solvents.
title_full_unstemmed Strong and selective halide anion binding by neutral halogen bonding [2]rotaxanes in wet organic solvents.
title_short Strong and selective halide anion binding by neutral halogen bonding [2]rotaxanes in wet organic solvents.
title_sort strong and selective halide anion binding by neutral halogen bonding 2 rotaxanes in wet organic solvents
work_keys_str_mv AT limj strongandselectivehalideanionbindingbyneutralhalogenbonding2rotaxanesinwetorganicsolvents
AT bunchuayt strongandselectivehalideanionbindingbyneutralhalogenbonding2rotaxanesinwetorganicsolvents
AT beerp strongandselectivehalideanionbindingbyneutralhalogenbonding2rotaxanesinwetorganicsolvents