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Dynamical properties across different coarse-grained models for ionic liquids

Rudzinski, Joseph F. ; Kloth, Sebastian ; Wörner, Svenja ; Pal, Tamisra ; Kremer, Kurt ; Bereau, Tristan ; Vogel, Michael (2024)
Dynamical properties across different coarse-grained models for ionic liquids.
In: Journal of Physics: Condensed Matter, 2021, 33 (22)
doi: 10.26083/tuprints-00020426
Article, Secondary publication, Publisher's Version

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Item Type: Article
Type of entry: Secondary publication
Title: Dynamical properties across different coarse-grained models for ionic liquids
Language: English
Date: 9 January 2024
Place of Publication: Darmstadt
Year of primary publication: 2021
Place of primary publication: Bristol
Publisher: IOP Publishing
Journal or Publication Title: Journal of Physics: Condensed Matter
Volume of the journal: 33
Issue Number: 22
Collation: 15 Seiten
DOI: 10.26083/tuprints-00020426
Corresponding Links:
Origin: Secondary publication DeepGreen
Abstract:

Room-temperature ionic liquids (RTILs) stand out among molecular liquids for their rich physicochemical characteristics, including structural and dynamic heterogeneity. The significance of electrostatic interactions in RTILs results in long characteristic length- and timescales, and has motivated the development of a number of coarse-grained (CG) simulation models. In this study, we aim to better understand the connection between certain CG parameterization strategies and the dynamical properties and transferability of the resulting models. We systematically compare five CG models: a model largely parameterized from experimental thermodynamic observables; a refinement of this model to increase its structural accuracy; and three models that reproduce a given set of structural distribution functions by construction, with varying intramolecular parameterizations and reference temperatures. All five CG models display limited structural transferability over temperature, and also result in various effective dynamical speedup factors, relative to a reference atomistic model. On the other hand, the structure-based CG models tend to result in more consistent cation–anion relative diffusion than the thermodynamic-based models, for a single thermodynamic state point. By linking short- and long-timescale dynamical behaviors, we demonstrate that the varying dynamical properties of the different CG models can be largely collapsed onto a single curve, which provides evidence for a route to constructing dynamically-consistent CG models of RTILs.

Uncontrolled Keywords: room-temperature ionic liquids, multiscale modeling, coarse-grained dynamics, structural-dynamical relationships
Status: Publisher's Version
URN: urn:nbn:de:tuda-tuprints-204268
Classification DDC: 500 Science and mathematics > 530 Physics
Divisions: 05 Department of Physics > Institute for Condensed Matter Physics
Date Deposited: 09 Jan 2024 10:46
Last Modified: 05 Mar 2024 11:00
SWORD Depositor: Deep Green
URI: https://tuprints.ulb.tu-darmstadt.de/id/eprint/20426
PPN: 515973602
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