The Role of the Cation in the Solvation of Cellulose by Imidazolium-Based Ionic Liquids

We present a systematic molecular dynamics study examining the roles of the individual ions of different alkylimidazolium-based ionic liquids in the solvation of cellulose. We examine combinations of chloride, acetate, and dimethylphosphate anions paired with cations of increasing tail length to elu...

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Published inThe journal of physical chemistry. B Vol. 118; no. 6; pp. 1621 - 1629
Main Authors Rabideau, Brooks D, Agarwal, Animesh, Ismail, Ahmed E
Format Journal Article
LanguageEnglish
Published United States American Chemical Society 13.02.2014
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Abstract We present a systematic molecular dynamics study examining the roles of the individual ions of different alkylimidazolium-based ionic liquids in the solvation of cellulose. We examine combinations of chloride, acetate, and dimethylphosphate anions paired with cations of increasing tail length to elucidate the precise role of the cation in solvating cellulose. In all cases we find that the cation interacts with the nonpolar domains of cellulose through dispersion interactions, while interacting electrostatically with the anions bound at the polar domains of cellulose. Furthermore, the structure and dimensions of the imidazolium head facilitate the formation of large chains and networks of alternating cations and anions that form a patchwork, satisfying both the polar and nonpolar domains of cellulose. A subtle implication of increasing tail length is the dilution of the anion concentration in the bulk and at the cellulose surface. We show how this decreased concentration of anions in the bulk affects hydrogen bond formation with cellulose and how rearrangements from single hydrogen bonds to multiple shared hydrogen bonds can moderate the loss in overall hydrogen bond numbers. Additionally, for the tail lengths examined in this study we observe only a very minor effect of tail length on the solvation structure and overall interaction energies.
AbstractList We present a systematic molecular dynamics study examining the roles of the individual ions of different alkylimidazolium-based ionic liquids in the solvation of cellulose. We examine combinations of chloride, acetate, and dimethylphosphate anions paired with cations of increasing tail length to elucidate the precise role of the cation in solvating cellulose. In all cases we find that the cation interacts with the nonpolar domains of cellulose through dispersion interactions, while interacting electrostatically with the anions bound at the polar domains of cellulose. Furthermore, the structure and dimensions of the imidazolium head facilitate the formation of large chains and networks of alternating cations and anions that form a patchwork, satisfying both the polar and nonpolar domains of cellulose. A subtle implication of increasing tail length is the dilution of the anion concentration in the bulk and at the cellulose surface. We show how this decreased concentration of anions in the bulk affects hydrogen bond formation with cellulose and how rearrangements from single hydrogen bonds to multiple shared hydrogen bonds can moderate the loss in overall hydrogen bond numbers. Additionally, for the tail lengths examined in this study we observe only a very minor effect of tail length on the solvation structure and overall interaction energies.
Author Agarwal, Animesh
Rabideau, Brooks D
Ismail, Ahmed E
AuthorAffiliation Aachener Verfahrenstechnik: Molecular Simulations and Transformations, Faculty of Mechanical Engineering
Institut für Mathematik
Freie Universität Berlin
RWTH Aachen University
AICES Graduate School
AuthorAffiliation_xml – name: RWTH Aachen University
– name: Freie Universität Berlin
– name: Institut für Mathematik
– name: Aachener Verfahrenstechnik: Molecular Simulations and Transformations, Faculty of Mechanical Engineering
– name: AICES Graduate School
Author_xml – sequence: 1
  givenname: Brooks D
  surname: Rabideau
  fullname: Rabideau, Brooks D
  email: rabideau@aices.rwth-aachen.de
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  givenname: Animesh
  surname: Agarwal
  fullname: Agarwal, Animesh
– sequence: 3
  givenname: Ahmed E
  surname: Ismail
  fullname: Ismail, Ahmed E
  email: aei@alum.mit.edu
BackLink https://www.ncbi.nlm.nih.gov/pubmed/24446709$$D View this record in MEDLINE/PubMed
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Snippet We present a systematic molecular dynamics study examining the roles of the individual ions of different alkylimidazolium-based ionic liquids in the solvation...
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SubjectTerms Anions
Cations
Cellulose
Dispersions
Formations
Hydrogen bonds
Ionic liquids
Solvation
Title The Role of the Cation in the Solvation of Cellulose by Imidazolium-Based Ionic Liquids
URI http://dx.doi.org/10.1021/jp4115755
https://www.ncbi.nlm.nih.gov/pubmed/24446709
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