Using remote substituents to control solution structure and anion binding in lanthanide complexes.

A study of the anion-binding properties of three structurally related lanthanide complexes, which all contain chemically identical anion-binding motifs, has revealed dramatic differences in their anion affinity. These arise as a consequence of changes in the substitution pattern on the periphery of...

Ful tanımlama

Detaylı Bibliyografya
Asıl Yazarlar: Tropiano, M, Blackburn, O, Tilney, J, Hill, L, Placidi, M, Aarons, R, Sykes, D, Jones, M, Kenwright, A, Snaith, J, Sørensen, T, Faulkner, S
Materyal Türü: Journal article
Dil:English
Baskı/Yayın Bilgisi: 2013
_version_ 1826296102021758976
author Tropiano, M
Blackburn, O
Tilney, J
Hill, L
Placidi, M
Aarons, R
Sykes, D
Jones, M
Kenwright, A
Snaith, J
Sørensen, T
Faulkner, S
author_facet Tropiano, M
Blackburn, O
Tilney, J
Hill, L
Placidi, M
Aarons, R
Sykes, D
Jones, M
Kenwright, A
Snaith, J
Sørensen, T
Faulkner, S
author_sort Tropiano, M
collection OXFORD
description A study of the anion-binding properties of three structurally related lanthanide complexes, which all contain chemically identical anion-binding motifs, has revealed dramatic differences in their anion affinity. These arise as a consequence of changes in the substitution pattern on the periphery of the molecule, at a substantial distance from the binding pocket. Herein, we explore these remote substituent effects and explain the observed behaviour through discussion of the way in which remote substituents can influence and control the global structure of a molecule through their demands upon conformational space. Peripheral modifications to a binuclear lanthanide motif derived from α,α'-bis(DO3 Ayl)-m-xylene are shown to result in dramatic changes to the binding constant for isophthalate. In this system, the parent compound displays considerable conformational flexibility, yet can be assumed to bind to isophthalate through a well-defined conformer. Addition of steric bulk remote from the binding site restricts conformational mobility, giving rise to an increase in binding constant on entropic grounds as long as the ideal binding conformation is not excluded from the available range of conformers.
first_indexed 2024-03-07T04:11:10Z
format Journal article
id oxford-uuid:c7dca2f8-754f-453c-9e34-3b9dea4a96c6
institution University of Oxford
language English
last_indexed 2024-03-07T04:11:10Z
publishDate 2013
record_format dspace
spelling oxford-uuid:c7dca2f8-754f-453c-9e34-3b9dea4a96c62022-03-27T06:48:22ZUsing remote substituents to control solution structure and anion binding in lanthanide complexes.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:c7dca2f8-754f-453c-9e34-3b9dea4a96c6EnglishSymplectic Elements at Oxford2013Tropiano, MBlackburn, OTilney, JHill, LPlacidi, MAarons, RSykes, DJones, MKenwright, ASnaith, JSørensen, TFaulkner, SA study of the anion-binding properties of three structurally related lanthanide complexes, which all contain chemically identical anion-binding motifs, has revealed dramatic differences in their anion affinity. These arise as a consequence of changes in the substitution pattern on the periphery of the molecule, at a substantial distance from the binding pocket. Herein, we explore these remote substituent effects and explain the observed behaviour through discussion of the way in which remote substituents can influence and control the global structure of a molecule through their demands upon conformational space. Peripheral modifications to a binuclear lanthanide motif derived from α,α'-bis(DO3 Ayl)-m-xylene are shown to result in dramatic changes to the binding constant for isophthalate. In this system, the parent compound displays considerable conformational flexibility, yet can be assumed to bind to isophthalate through a well-defined conformer. Addition of steric bulk remote from the binding site restricts conformational mobility, giving rise to an increase in binding constant on entropic grounds as long as the ideal binding conformation is not excluded from the available range of conformers.
spellingShingle Tropiano, M
Blackburn, O
Tilney, J
Hill, L
Placidi, M
Aarons, R
Sykes, D
Jones, M
Kenwright, A
Snaith, J
Sørensen, T
Faulkner, S
Using remote substituents to control solution structure and anion binding in lanthanide complexes.
title Using remote substituents to control solution structure and anion binding in lanthanide complexes.
title_full Using remote substituents to control solution structure and anion binding in lanthanide complexes.
title_fullStr Using remote substituents to control solution structure and anion binding in lanthanide complexes.
title_full_unstemmed Using remote substituents to control solution structure and anion binding in lanthanide complexes.
title_short Using remote substituents to control solution structure and anion binding in lanthanide complexes.
title_sort using remote substituents to control solution structure and anion binding in lanthanide complexes
work_keys_str_mv AT tropianom usingremotesubstituentstocontrolsolutionstructureandanionbindinginlanthanidecomplexes
AT blackburno usingremotesubstituentstocontrolsolutionstructureandanionbindinginlanthanidecomplexes
AT tilneyj usingremotesubstituentstocontrolsolutionstructureandanionbindinginlanthanidecomplexes
AT hilll usingremotesubstituentstocontrolsolutionstructureandanionbindinginlanthanidecomplexes
AT placidim usingremotesubstituentstocontrolsolutionstructureandanionbindinginlanthanidecomplexes
AT aaronsr usingremotesubstituentstocontrolsolutionstructureandanionbindinginlanthanidecomplexes
AT sykesd usingremotesubstituentstocontrolsolutionstructureandanionbindinginlanthanidecomplexes
AT jonesm usingremotesubstituentstocontrolsolutionstructureandanionbindinginlanthanidecomplexes
AT kenwrighta usingremotesubstituentstocontrolsolutionstructureandanionbindinginlanthanidecomplexes
AT snaithj usingremotesubstituentstocontrolsolutionstructureandanionbindinginlanthanidecomplexes
AT sørensent usingremotesubstituentstocontrolsolutionstructureandanionbindinginlanthanidecomplexes
AT faulkners usingremotesubstituentstocontrolsolutionstructureandanionbindinginlanthanidecomplexes