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Erik Thoms
Erik Thoms
Université libre de Bruxelles
Bestätigte E-Mail-Adresse bei ulb.be
Titel
Zitiert von
Zitiert von
Jahr
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
1232015
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
162021
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
132018
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
92018
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
92017
Enthalpy-entropy compensation in the slow Arrhenius process
E Thoms, S Napolitano
The Journal of Chemical Physics 159 (16), 2023
82023
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
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
42022
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
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
12024
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
Fast Processing Affects the Relaxation of Polymers: The Slow Arrhenius Process Can Probe Stress at the Molecular Level
E Thoms, K Wang, S Chandran, S Napolitano
The Journal of Physical Chemistry Letters 15, 4838-4843, 2024
2024
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