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Comparing the void space and long-range structure of an ionic liquid with a neutral mixture of similar sized molecules. / Shelepova, Ekaterina A.; Paschek, Dietmar; Ludwig, Ralf и др.

в: Journal of Molecular Liquids, Том 299, 112121, 01.02.2020.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

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Shelepova EA, Paschek D, Ludwig R, Medvedev NN. Comparing the void space and long-range structure of an ionic liquid with a neutral mixture of similar sized molecules. Journal of Molecular Liquids. 2020 февр. 1;299:112121. doi: 10.1016/j.molliq.2019.112121

Author

Shelepova, Ekaterina A. ; Paschek, Dietmar ; Ludwig, Ralf и др. / Comparing the void space and long-range structure of an ionic liquid with a neutral mixture of similar sized molecules. в: Journal of Molecular Liquids. 2020 ; Том 299.

BibTeX

@article{87b57320216f45fc8e01bfd210b7e191,
title = "Comparing the void space and long-range structure of an ionic liquid with a neutral mixture of similar sized molecules",
abstract = "We study the void space and the structure of a coarse-grained molecular model of the ionic liquid 1-butyl-3-methylimidazolium hexafluorophosphate [C4mim][PF6] and the corresponding model of an uncharged liquid consisting of the same molecules but with zero charges as a function of temperature between 300 K and 600 K using molecular dynamics simulations. Long-distance radial correlation functions for representative sites and for interstitial spheres were calculated for the individual subsystems representing anions and cations. The geometry of the local structural arrangements was investigated using the technique of Delaunay simplices. As expected, the ionic liquid demonstrates a noticeable regularity with respect to the alternation of anions and cations, which is present in all studied distance-ranges. The structure of uncharged subsystems, however, demonstrates features typical for simple liquids, which are governed by geometrical laws of the dense disordered packing of impenetrable particles. A prominent structural feature of the studied ionic liquid is that the “mutually closest fours” of anions form configurations of pronounced tetrahedral shape with a cation being located in between them. Correspondingly, the cations (here represented by the position of their central site) also form tetrahedral configurations around an anion. In the uncharged system, such mutual arrangements are found to be absent. The analysis of the models for different temperatures demonstrates that the principal differences between the structures of the charged and uncharged subsystems remain present up to 600 K. Quite interestingly, the distribution of void spaces, as represented by the radii of interstitial spheres, is found to be consistently, albeit slightly broader for the charged model liquid.",
keywords = "DIELECTRIC RESPONSE, PHYSICAL-PROPERTIES, DYNAMICS, SOLVENTS, SIMULATIONS, MORPHOLOGY, PACKINGS, CATION",
author = "Shelepova, {Ekaterina A.} and Dietmar Paschek and Ralf Ludwig and Medvedev, {Nikolai N.}",
year = "2020",
month = feb,
day = "1",
doi = "10.1016/j.molliq.2019.112121",
language = "English",
volume = "299",
journal = "Journal of Molecular Liquids",
issn = "0167-7322",
publisher = "Elsevier",

}

RIS

TY - JOUR

T1 - Comparing the void space and long-range structure of an ionic liquid with a neutral mixture of similar sized molecules

AU - Shelepova, Ekaterina A.

AU - Paschek, Dietmar

AU - Ludwig, Ralf

AU - Medvedev, Nikolai N.

PY - 2020/2/1

Y1 - 2020/2/1

N2 - We study the void space and the structure of a coarse-grained molecular model of the ionic liquid 1-butyl-3-methylimidazolium hexafluorophosphate [C4mim][PF6] and the corresponding model of an uncharged liquid consisting of the same molecules but with zero charges as a function of temperature between 300 K and 600 K using molecular dynamics simulations. Long-distance radial correlation functions for representative sites and for interstitial spheres were calculated for the individual subsystems representing anions and cations. The geometry of the local structural arrangements was investigated using the technique of Delaunay simplices. As expected, the ionic liquid demonstrates a noticeable regularity with respect to the alternation of anions and cations, which is present in all studied distance-ranges. The structure of uncharged subsystems, however, demonstrates features typical for simple liquids, which are governed by geometrical laws of the dense disordered packing of impenetrable particles. A prominent structural feature of the studied ionic liquid is that the “mutually closest fours” of anions form configurations of pronounced tetrahedral shape with a cation being located in between them. Correspondingly, the cations (here represented by the position of their central site) also form tetrahedral configurations around an anion. In the uncharged system, such mutual arrangements are found to be absent. The analysis of the models for different temperatures demonstrates that the principal differences between the structures of the charged and uncharged subsystems remain present up to 600 K. Quite interestingly, the distribution of void spaces, as represented by the radii of interstitial spheres, is found to be consistently, albeit slightly broader for the charged model liquid.

AB - We study the void space and the structure of a coarse-grained molecular model of the ionic liquid 1-butyl-3-methylimidazolium hexafluorophosphate [C4mim][PF6] and the corresponding model of an uncharged liquid consisting of the same molecules but with zero charges as a function of temperature between 300 K and 600 K using molecular dynamics simulations. Long-distance radial correlation functions for representative sites and for interstitial spheres were calculated for the individual subsystems representing anions and cations. The geometry of the local structural arrangements was investigated using the technique of Delaunay simplices. As expected, the ionic liquid demonstrates a noticeable regularity with respect to the alternation of anions and cations, which is present in all studied distance-ranges. The structure of uncharged subsystems, however, demonstrates features typical for simple liquids, which are governed by geometrical laws of the dense disordered packing of impenetrable particles. A prominent structural feature of the studied ionic liquid is that the “mutually closest fours” of anions form configurations of pronounced tetrahedral shape with a cation being located in between them. Correspondingly, the cations (here represented by the position of their central site) also form tetrahedral configurations around an anion. In the uncharged system, such mutual arrangements are found to be absent. The analysis of the models for different temperatures demonstrates that the principal differences between the structures of the charged and uncharged subsystems remain present up to 600 K. Quite interestingly, the distribution of void spaces, as represented by the radii of interstitial spheres, is found to be consistently, albeit slightly broader for the charged model liquid.

KW - DIELECTRIC RESPONSE

KW - PHYSICAL-PROPERTIES

KW - DYNAMICS

KW - SOLVENTS

KW - SIMULATIONS

KW - MORPHOLOGY

KW - PACKINGS

KW - CATION

UR - http://www.scopus.com/inward/record.url?scp=85075885425&partnerID=8YFLogxK

U2 - 10.1016/j.molliq.2019.112121

DO - 10.1016/j.molliq.2019.112121

M3 - Article

AN - SCOPUS:85075885425

VL - 299

JO - Journal of Molecular Liquids

JF - Journal of Molecular Liquids

SN - 0167-7322

M1 - 112121

ER -

ID: 22578734