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Confined ionic liquids, ionogels

J. Le Bideau, B. Humbert, M. Bayle, C. Ewels

The confinement of ionic liquids allows the properties of ionic liquids to be exploited while benefiting from containment as a solid. The diffusion properties in the resulting nanoporous ionogels (the nanopores seen here as "inverse nanoobjects") are similar to those of liquids. Through the variation of the chemical and topological characteristics of many ionogels, we have broadened our understanding of the behavior at the interface between ionic liquids and host networks by examining the dynamics of the ions, their interactions with each other, as well as their interactions with the host network. We focus on the fundamental understanding of self-organization, anomalous diffusion and surface-liquid interaction in these nanoconfined environments, with technological implications (energy storage and optical devices).

To go further : [Ionogels], [Micro-supercapacitors], [Ionic liquids]

 simu tfsi
Other people involved : 
N. Demarthe (Doc 2020-), M. Deniel (ATER, 2020-2021), T. Guillemin (Doc 2018-), A. Marie (Doc 2017-2020), B. Asbani (CDD 2016-2018), D. Aidoud (Doc 2016-2017), M. Brachet (Doc 2013-2015), C. Cerclier (CDD 2012-2014), A. Lack (CDD 2011-2016), P.-E. Delanoy (Doc 2009-2013)
 Keywords : 
Ionic liquids, diffusion, modeling, energy storage applications

Collaborations :

  • D. Guyomard, T. Brousse, B. Lestriez, N. Dupré, ST2E group, IMN, Nantes, France
  • A. Galarneau (MACS group), F. Favier & O. Fontaine (AIME group), Institut Charles Gerhardt, Montpellier, France
  • P. Judeinstein, J.-M. Zanotti, Laboratoire Léon Brillouin, CEA-CNRS UMR 12, CEA Saclay, Université Paris-Saclay, France
  • M. Forsyth, P. Howlett, R. Kerr, Institute for Frontier Materials, Deakin University, Burwood, Australia
  • C. Lethien, Institut d'Electronique, de Microélectronique et de Nanotechnologies, Université de Lille, France
  • P. Johansson, A. Matic, Department of Physics, Chalmers University of Technology, S41296, Göteborg, Sweden
  • Andrea Balducci, Friedrich-Schiller-University, Jena, Germany
  • D. Arrua, Future Industry Institute, University of South Australia, Adelaide, Australia
  • L. M. Varela, Photonics and Soft Matter Group, Condensed Matter Physics, Univ. of Santiago de Compostela, Spain
  • P. Umek, Solid State Physics Dept, Jožef Stefan Institute, Ljubljana, Slovenia
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