The role of surface material properties on the behavior of ionic liquids in nanoconfinement: A critical review and perspective

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Main Authors: Nesterova, Irina, Kondratyuk, Nikolay, Budkov, Yury, Gerke, Kirill, Khlyupin, Aleksey
Format: Preprint
Published: 2024
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author Nesterova, Irina
Kondratyuk, Nikolay
Budkov, Yury
Gerke, Kirill
Khlyupin, Aleksey
author_facet Nesterova, Irina
Kondratyuk, Nikolay
Budkov, Yury
Gerke, Kirill
Khlyupin, Aleksey
contents Room temperature ionic liquids show great promise as electrolytes in various technological applications, such as energy storage or electrotunable lubrication. These applications are particularly intriguing due to the specific behavior of ionic liquids in nanoconfinement. While previous research has been focused on optimizing the required characteristics through the selection of electrolyte properties, the contribution of confining material properties in these systems has been largely overlooked. In this Review, we provide constructive analysis of recent developments related to the description of surface material properties impact on the ionic liquid behavior in the confinement and propose potential ways for further investigations in this direction. Although the presented advances reveal the importance of surface material properties in the application processes with confined ionic liquids, there are still a lot of issues that should be thoroughly investigated in future. We believe that this review will significantly contribute to the development of new approaches with material properties consideration for confined ionic liquid research.
format Preprint
id arxiv_https___arxiv_org_abs_2410_08721
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The role of surface material properties on the behavior of ionic liquids in nanoconfinement: A critical review and perspective
Nesterova, Irina
Kondratyuk, Nikolay
Budkov, Yury
Gerke, Kirill
Khlyupin, Aleksey
Soft Condensed Matter
Chemical Physics
J.2
Room temperature ionic liquids show great promise as electrolytes in various technological applications, such as energy storage or electrotunable lubrication. These applications are particularly intriguing due to the specific behavior of ionic liquids in nanoconfinement. While previous research has been focused on optimizing the required characteristics through the selection of electrolyte properties, the contribution of confining material properties in these systems has been largely overlooked. In this Review, we provide constructive analysis of recent developments related to the description of surface material properties impact on the ionic liquid behavior in the confinement and propose potential ways for further investigations in this direction. Although the presented advances reveal the importance of surface material properties in the application processes with confined ionic liquids, there are still a lot of issues that should be thoroughly investigated in future. We believe that this review will significantly contribute to the development of new approaches with material properties consideration for confined ionic liquid research.
title The role of surface material properties on the behavior of ionic liquids in nanoconfinement: A critical review and perspective
topic Soft Condensed Matter
Chemical Physics
J.2
url https://arxiv.org/abs/2410.08721