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A volume-based description of transport in incompressible liquid electrolytes and its application to ionic liquids

Kilchert, Franziska 1; Lorenz, Martin; Schammer, Max 1; Nürnberg, Pinchas; Schönhoff, Monika; Latz, Arnulf 1; Horstmann, Birger 1
1 Helmholtz-Institut Ulm (HIU), Karlsruher Institut für Technologie (KIT)

Abstract:

Transference numbers play an important role in understanding the dynamics of electrolytes and assessing their performance in batteries. Unfortunately, these transport parameters are difficult to measure in highly concentrated liquid electrolytes such as ionic liquids. Also, the interpretation of their sign and magnitude has provoked an ongoing debate in the literature further complicated by the use of different languages. In this work, we highlight the role of the reference frame for the interpretation of transport parameters using our novel thermodynamically consistent theory for highly correlated electrolytes. We argue that local volume conservation is a key principle in incompressible liquid electrolytes and use the volume-based drift velocity as a reference. We apply our general framework to electrophoretic NMR experiments. For ionic liquid based electrolytes, we find that the results of the eNMR measurements can be best described using this volume-based description. This highlights the limitations of the widely used center-of-mass reference frame which for example forms the basis for molecular dynamics simulations – a standard tool for the theoretical calculation of transport parameters. ... mehr


Verlagsausgabe §
DOI: 10.5445/IR/1000163130
Veröffentlicht am 17.10.2023
Originalveröffentlichung
DOI: 10.1039/d2cp04423d
Scopus
Zitationen: 14
Dimensions
Zitationen: 16
Cover der Publikation
Zugehörige Institution(en) am KIT Helmholtz-Institut Ulm (HIU)
Publikationstyp Zeitschriftenaufsatz
Publikationsdatum 14.10.2023
Sprache Englisch
Identifikator ISSN: 1463-9076, 1463-9084
KITopen-ID: 1000163130
Erschienen in Physical Chemistry Chemical Physics
Verlag Royal Society of Chemistry (RSC)
Band 25
Heft 38
Seiten 25965–25978
Vorab online veröffentlicht am 27.07.2023
Nachgewiesen in Web of Science
Dimensions
Scopus
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