Anion-templated assembly of interpenetrated and interlocked structures.

The rational development of a general anion templation strategy for the construction of a variety of interpenetrated and interlocked molecular structures based upon the coupling of anion recognition with ion-pairing is described. The success of this anion templation methodology is demonstrated with...

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Main Authors: Beer, P, Sambrook, MR, Curiel, D
Format: Journal article
Language:English
Published: 2006
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author Beer, P
Sambrook, MR
Curiel, D
author_facet Beer, P
Sambrook, MR
Curiel, D
author_sort Beer, P
collection OXFORD
description The rational development of a general anion templation strategy for the construction of a variety of interpenetrated and interlocked molecular structures based upon the coupling of anion recognition with ion-pairing is described. The success of this anion templation methodology is demonstrated with the halide anion directed assembly of a series of novel [2]pseudorotaxanes containing pyridinium, pyridinium nicotinamide, imidazolium, benzimidazolium and guanidinium threading components and anion binding macrocyclic ligands. Interlocked [2]rotaxane and [2]catenane molecular structures are also synthesised using this anion templation protocol. These interlocked structures feature unique topologically defined hydrogen bond donating binding domains that exhibit a high degree of selectivity for chloride, the templating anion. A series of rhenium(I) bipyridyl containing [2]pseudorotaxane assemblies and a [2]rotaxane further highlight the potential this strategic anion templation approach has in future chemical sensor design and fabrication.
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spelling oxford-uuid:b404512c-173a-4001-8949-770429248e6a2022-03-27T04:23:09ZAnion-templated assembly of interpenetrated and interlocked structures.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:b404512c-173a-4001-8949-770429248e6aEnglishSymplectic Elements at Oxford2006Beer, PSambrook, MRCuriel, DThe rational development of a general anion templation strategy for the construction of a variety of interpenetrated and interlocked molecular structures based upon the coupling of anion recognition with ion-pairing is described. The success of this anion templation methodology is demonstrated with the halide anion directed assembly of a series of novel [2]pseudorotaxanes containing pyridinium, pyridinium nicotinamide, imidazolium, benzimidazolium and guanidinium threading components and anion binding macrocyclic ligands. Interlocked [2]rotaxane and [2]catenane molecular structures are also synthesised using this anion templation protocol. These interlocked structures feature unique topologically defined hydrogen bond donating binding domains that exhibit a high degree of selectivity for chloride, the templating anion. A series of rhenium(I) bipyridyl containing [2]pseudorotaxane assemblies and a [2]rotaxane further highlight the potential this strategic anion templation approach has in future chemical sensor design and fabrication.
spellingShingle Beer, P
Sambrook, MR
Curiel, D
Anion-templated assembly of interpenetrated and interlocked structures.
title Anion-templated assembly of interpenetrated and interlocked structures.
title_full Anion-templated assembly of interpenetrated and interlocked structures.
title_fullStr Anion-templated assembly of interpenetrated and interlocked structures.
title_full_unstemmed Anion-templated assembly of interpenetrated and interlocked structures.
title_short Anion-templated assembly of interpenetrated and interlocked structures.
title_sort anion templated assembly of interpenetrated and interlocked structures
work_keys_str_mv AT beerp aniontemplatedassemblyofinterpenetratedandinterlockedstructures
AT sambrookmr aniontemplatedassemblyofinterpenetratedandinterlockedstructures
AT curield aniontemplatedassemblyofinterpenetratedandinterlockedstructures