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Impact of cation-ligand interactions on the permselectivity of ligand-functionalized polymer membranes in single and mixed salt systems

Harnoor Singh Sachar, Everett S. Zofchak, Nico Marioni, Zidan Zhang, Sanket Kadulkar, Tyler J. Duncan, Benny D. Freeman, Venkat Ganesan

Research output: Contribution to journalArticleResearchpeer-review

Abstract

We conduct molecular dynamics simulations to study the effects of cation-ligand interactions on salt permeation in ligand-functionalized polymer membranes. Our results indicate that salt partitioning into the membrane increases while the salt diffusivity decreases with enhancement in the cation-ligand interaction strength. Moreover, the increase in partitioning dominates the decline in salt diffusivity, leading to a net enhancement in salt permeation at higher cation-ligand interaction strengths. Equimolar binary mixed salt systems (having a common anion) generally exhibit much more selective partitioning of salts into the membrane as compared to their single salt counterparts. However, single salt systems exhibit much higher ratio of salt diffusivities than their mixed salt analogues. The permselectivity data closely resemble the trends in selective partitioning for both single and mixed salt systems, indicating that salt diffusivity selectivity plays a weaker role than salt partitioning selectivity in dictating the selective permeation of salts across the membrane.

Original languageEnglish
Pages (from-to)4821-4831
Number of pages11
JournalMacromolecules
Volume55
Issue number11
DOIs
Publication statusPublished - 14 Jun 2022
Externally publishedYes

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