Counter-ion binding and mobility in the presence of hydrophobic polyions – combining molecular dynamics simulations and NMR

Counter-ion binding and mobility in aqueous solutions of partially hydrophobic ionene oligoions is studied here by a combination of all-atomic molecular dynamics (MD) simulations and NMR (19F and 81Br nuclei) measurements. We present results for 12, 12–ionenes in the presence of different halide ion...

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Main Authors: Maksym Druchok, Natalie Malikova, Anne-Laure Rollet, Vojko Vlachy
Format: Article
Language:English
Published: AIP Publishing LLC 2016-06-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/1.4954292
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spelling doaj-abfb3697a37b4fad824a315340df50322020-11-25T00:57:32ZengAIP Publishing LLCAIP Advances2158-32262016-06-0166065214065214-1510.1063/1.4954292055606ADVCounter-ion binding and mobility in the presence of hydrophobic polyions – combining molecular dynamics simulations and NMRMaksym Druchok0Natalie Malikova1Anne-Laure Rollet2Vojko Vlachy3Institute for Condensed Matter Physics, Svientsitskii 1, 79011 Lviv, UkraineSorbonne Universités, UPMC Univ Paris 06, CNRS, UMR 8234, PHENIX, F-75005, Paris, FranceSorbonne Universités, UPMC Univ Paris 06, CNRS, UMR 8234, PHENIX, F-75005, Paris, FranceFaculty of Chemistry and Chemical Technology, University of Ljubljana, Večna pot 113, SI-1000 Ljubljana, SloveniaCounter-ion binding and mobility in aqueous solutions of partially hydrophobic ionene oligoions is studied here by a combination of all-atomic molecular dynamics (MD) simulations and NMR (19F and 81Br nuclei) measurements. We present results for 12, 12–ionenes in the presence of different halide ions (F−, Cl−, Br− and I−), as well as their mixtures; the latter allowing us to probe counter-ion selectivity of these oligoions. We consolidate both structural and dynamic information, in particular simulated radial distribution functions and average residence times of counter-ions in the vicinity of ionenes and NMR data in the form of counter-ion chemical shift and self-diffusion coefficients. On one hand, previously reported enthalpy of dilution and mixing measurements show a reverse counter-ion sequence for 12, 12–ionenes with respect to their less hydrophobic 3, 3– and 6, 6– analogues. On the other hand, the current MD and NMR data, reflecting the counter-ion binding tendencies to the ionene chain, give evidence for the same ordering as that observed by MD for 3, 3–ionenes. This is not seen as a contradiction and can be rationalized on the basis of increasing chain hydrophobicity, which has different consequences for enthalpy and ion-binding. The latter is reflecting free energy changes and as such includes both enthalpic and entropic contributions.http://dx.doi.org/10.1063/1.4954292
collection DOAJ
language English
format Article
sources DOAJ
author Maksym Druchok
Natalie Malikova
Anne-Laure Rollet
Vojko Vlachy
spellingShingle Maksym Druchok
Natalie Malikova
Anne-Laure Rollet
Vojko Vlachy
Counter-ion binding and mobility in the presence of hydrophobic polyions – combining molecular dynamics simulations and NMR
AIP Advances
author_facet Maksym Druchok
Natalie Malikova
Anne-Laure Rollet
Vojko Vlachy
author_sort Maksym Druchok
title Counter-ion binding and mobility in the presence of hydrophobic polyions – combining molecular dynamics simulations and NMR
title_short Counter-ion binding and mobility in the presence of hydrophobic polyions – combining molecular dynamics simulations and NMR
title_full Counter-ion binding and mobility in the presence of hydrophobic polyions – combining molecular dynamics simulations and NMR
title_fullStr Counter-ion binding and mobility in the presence of hydrophobic polyions – combining molecular dynamics simulations and NMR
title_full_unstemmed Counter-ion binding and mobility in the presence of hydrophobic polyions – combining molecular dynamics simulations and NMR
title_sort counter-ion binding and mobility in the presence of hydrophobic polyions – combining molecular dynamics simulations and nmr
publisher AIP Publishing LLC
series AIP Advances
issn 2158-3226
publishDate 2016-06-01
description Counter-ion binding and mobility in aqueous solutions of partially hydrophobic ionene oligoions is studied here by a combination of all-atomic molecular dynamics (MD) simulations and NMR (19F and 81Br nuclei) measurements. We present results for 12, 12–ionenes in the presence of different halide ions (F−, Cl−, Br− and I−), as well as their mixtures; the latter allowing us to probe counter-ion selectivity of these oligoions. We consolidate both structural and dynamic information, in particular simulated radial distribution functions and average residence times of counter-ions in the vicinity of ionenes and NMR data in the form of counter-ion chemical shift and self-diffusion coefficients. On one hand, previously reported enthalpy of dilution and mixing measurements show a reverse counter-ion sequence for 12, 12–ionenes with respect to their less hydrophobic 3, 3– and 6, 6– analogues. On the other hand, the current MD and NMR data, reflecting the counter-ion binding tendencies to the ionene chain, give evidence for the same ordering as that observed by MD for 3, 3–ionenes. This is not seen as a contradiction and can be rationalized on the basis of increasing chain hydrophobicity, which has different consequences for enthalpy and ion-binding. The latter is reflecting free energy changes and as such includes both enthalpic and entropic contributions.
url http://dx.doi.org/10.1063/1.4954292
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