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Nonmonotonic electrophoretic mobility of rodlike polyelectrolytes by multivalent coions in added salt

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posted on 2024-01-15, 09:39 authored by Hossein Vahid, Alberto Scacchi, Maria Sammalkorpi, Tapio Ala-NissilaTapio Ala-Nissila
<p>It is well established that when multivalent counterions or salts are added to a solution of highly charged polyelectrolytes (PEs), correlation effects can cause charge inversion of the PE, leading to electrophoretic mobility (EM) reversal. In this work, we use coarse-grained molecular-dynamics simulations to unravel the less understood effect of coion valency on EM reversal for rigid DNA-like PEs. We find that EM reversal induced by multivalent counterions is suppressed with increasing coion valency in the salt added and eventually vanishes. Further, we find that EM is enhanced at fixed low salt concentrations for salts with monovalent counterions when multivalent coions with increasing valency are introduced. However, increasing the salt concentration causes a crossover that leads to EM reversal which is enhanced by increasing coion valency at high salt concentration. Remarkably, this multivalent coion-induced EM reversal persists even for low values of PE linear charge densities where multivalent counterions alone cannot induce EM reversal. These results facilitate tuning PE-PE interactions and self-assembly with both coion and counterion valencies.</p>

Funding

Academy of Finland through its Centres of Excellence Programme (2022-2029, LIBER) under Project no. 346111 and Academy of Finland project No. 353298

Technology Industries of Finland Centennial Foundation TT2020 grant

History

School

  • Science

Department

  • Mathematical Sciences

Published in

Physical Review E

Volume

109

Issue

1

Publisher

American Physical Society

Version

  • VoR (Version of Record)

Rights holder

© The authors

Publisher statement

This is an Open Access Article. It is published by the American Physical Society under the Creative Commons Attribution 4.0 International Licence (CC BY). Full details of this licence are available at: https://creativecommons.org/licenses/by/4.0/

Acceptance date

2023-11-30

Publication date

2024-01-11

Copyright date

2024

ISSN

2470-0045

eISSN

2470-0053

Language

  • en

Depositor

Prof Tapio Ala-Nissila. Deposit date: 12 January 2024

Article number

014501

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