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Erik Thoms
Erik Thoms
Université libre de Bruxelles
Verified email at ulb.be
Title
Cited by
Cited by
Year
Importance of liquid fragility for energy applications of ionic liquids
P Sippel, P Lunkenheimer, S Krohns, E Thoms, A Loidl
Scientific reports 5 (1), 13922, 2015
1222015
Dielectric study on mixtures of ionic liquids
E Thoms, P Sippel, D Reuter, M Weiß, A Loidl, S Krohns
Scientific reports 7 (1), 7463, 2017
522017
Dielectric signature of charge order in lanthanum nickelates
P Sippel, S Krohns, E Thoms, E Ruff, S Riegg, H Kirchhain, F Schrettle, ...
The European Physical Journal B 85, 1-8, 2012
252012
Structural relaxation and recovery: A dielectric approach
R Richert, JP Gabriel, E Thoms
The Journal of Physical Chemistry Letters 12 (35), 8465-8469, 2021
222021
Controlling the Columnar Order in a Discotic Liquid Crystal by Kinetic Arrest of Disc Tumbling
Z Chen, C Bishop, E Thoms, H Bock, MD Ediger, R Richert, L Yu
Chemistry of Materials 33 (12), 4757-4764, 2021
152021
How is charge transport different in ionic liquids? The effect of high pressure
Z Wojnarowska, E Thoms, B Blanchard, SN Tripathy, P Goodrich, ...
Physical Chemistry Chemical Physics 19 (21), 14141-14147, 2017
152017
In situ observation of fast surface dynamics during the vapor-deposition of a stable organic glass
E Thoms, JP Gabriel, A Guiseppi-Elie, MD Ediger, R Richert
Soft Matter 16 (48), 10860-10864, 2020
142020
Breakdown of the Simple Arrhenius Law in the Normal Liquid State
E Thoms, A Grzybowski, S Pawlus, M Paluch
The Journal of Physical Chemistry Letters 9 (7), 1783-1787, 2018
112018
Polyamorphism in vapor-deposited 2-methyltetrahydrofuran: A broadband dielectric relaxation study
JP Gabriel, B Riechers, E Thoms, A Guiseppi-Elie, MD Ediger, R Richert
The Journal of Chemical Physics 154 (2), 2021
102021
Inflection point in the Debye relaxation time of 2-butyl-1-octanol
E Thoms, S Kołodziej, M Wikarek, S Klotz, S Pawlus, M Paluch
The Journal of Chemical Physics 149 (21), 214502, 2018
82018
Communication: Inflection in the pressure dependent conductivity of the protic ionic liquid C8HIM NTf2
E Thoms, Z Wojnarowska, P Goodrich, J Jacquemin, M Paluch
The Journal of Chemical Physics 146 (18), 2017
82017
Enthalpy-entropy compensation in the slow Arrhenius process
E Thoms, S Napolitano
The Journal of Chemical Physics 159 (16), 2023
72023
New experimental approach to nonlinear dielectric effects in the static limit
E Thoms, R Richert
Journal of Molecular Liquids 340, 117107, 2021
52021
High electric fields elucidate the hydrogen-bonded structures in 1-phenyl-1-propanol
JP Gabriel, E Thoms, R Richert
Journal of Molecular Liquids 330, 115626, 2021
52021
Silicone Materials for Electrical Insulation: A Dielectric Study of Oil Versus Gel
Y Haba, JP Gabriel, E Thoms, R Richert
IEEE Transactions on Dielectrics and Electrical Insulation 29 (2), 501-505, 2022
32022
A liquid with distinct metastable structures: Supercooled butyronitrile
JP Gabriel, E Thoms, A Guiseppi-Elie, MD Ediger, R Richert
The Journal of Chemical Physics 156 (4), 2022
32022
From very low to high fields: The dielectric behavior of the liquid crystal 5CB
E Thoms, L Yu, R Richert
Journal of Molecular Liquids 368, 120664, 2022
12022
Strong increase of correlations in liquid glycerol observed by nonlinear dielectric techniques
E Thoms, DV Matyushov, R Richert
The Journal of Chemical Physics 156 (17), 2022
12022
Tracing the slow Arrhenius process deep in the glassy state–quantitative evaluation of the dielectric relaxation of bulk samples and thin polymer films in the temperature domain
E Thoms, C Li, S Napolitano
The Journal of Chemical Physics 160 (3), 2024
2024
Chemical Variants of the Dicyanamide Anion, and a Landscape for Basic and Superbasic Ionic Liquids
MH Bhat, AD Edwards, TG Tucker, SK Davidowski, SA Amin, E Thoms, ...
Journal of The Electrochemical Society 169 (8), 086502, 2022
2022
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Articles 1–20