Journal
JOURNAL OF MOLECULAR LIQUIDS
Volume 322, Issue -, Pages -Publisher
ELSEVIER
DOI: 10.1016/j.molliq.2020.114567
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Funding
- Politecnico di Milano
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The spin-lattice relaxation times of both cation and anion forming ionic liquid materials were simultaneously measured using the dual receiver H-1/F-19 inversion-recovery NMR method. Experimental data analysis showed that the overall dynamic behavior of ionic liquids is influenced by the length of the alkyl chain and the capability of the anion to disrupt or stabilize the apolar domain structure.
The dual receiver H-1/F-19 inversion-recovery NMR method is applied to measure simultaneously the spin-lattice relaxation times, T-1, of both cation and anion forming ionic liquid (ILs) materials. Two representative classes of ILs comprising 1-alkyl-3-methylimidazolium[C(n)MIm](+) (n=2, 12) as cation and bis(trifluoromethylsulfonyl)imide [TFSI](-) or tetrafluoroborate [BF4](-) as anions have been considered. The experimental data, acquired on a wide range of temperature (278-333 K), have been analysed according to the Bloembergen, Purcell, and Pound model and provide the rotational dynamic parameters, such as the activation energy and the correlation time tau(c) of the rotational segmental motion. The overall dynamic behaviour is dictated by the length of the alkyl chain and the capability of the anion to disrupt or stabilize the apolar domain structure. (c) 2020 Elsevier B.V. All rights reserved.
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