Dynamics of Molecular Liquids: From Water to Ionic Liquids

Author(s):  
Tsuyoshi Yamaguchi
2009 ◽  
Vol 81 (4) ◽  
pp. 767-776 ◽  
Author(s):  
Cinzia Chiappe ◽  
Marco Malvaldi ◽  
Christian Silvio Pomelli

The role of ionic liquids (ILs) as solvents in chemistry is limited by the poor understanding of the solvation phenomenon in these media. The usual classification criteria used for molecular solvents through various experimental measurements fail to insert ILs into a univocal classification for ILs. Here, we first discuss the unsuitability of the usual interpretative scheme for molecular liquids and elucidate schematically the mechanism of solvation in ILs, pointing out the peculiarities that differentiate them with respect to molecular liquids. Second, we focus on reactivity and reaction kinetics in ILs, underlining the many problems that the complexity of these media reflects on the interpretation of kinetic data and some possible approaches to understand qualitatively the (often not trivial) kinetic problems for reactions performed in ILs.


2008 ◽  
Vol 607 ◽  
pp. 232-234 ◽  
Author(s):  
Tetsuya Hirade

Positron annihilation age-momentum correlation measurements (AMOC) were performed for room temperature ionic liquids (IL) to investigate positronium (Ps) formation process. The solvation time of free electrons in IL is longer than in usual molecular liquids. And hence IL is very useful materials to investigate fast reactions such as Ps formation. On the other hand, Ps formation is a good tool to investigate the dry electrons. The para-Ps annihilation lifetime is about 125ps and then the effect of dry electrons should be seen on the S(t) parameters made by the age-momentum correlation measurements. The slow Ps formation was observed in the room temperature ionic liquids.


2005 ◽  
Vol 433 (1-2) ◽  
pp. 149-152 ◽  
Author(s):  
D. Waliszewski ◽  
I. Stępniak ◽  
H. Piekarski ◽  
A. Lewandowski

2020 ◽  
Vol 22 (13) ◽  
pp. 6861-6867 ◽  
Author(s):  
Anne Strate ◽  
Jan Neumann ◽  
Thomas Niemann ◽  
Peter Stange ◽  
Alexander E. Khudozhitkov ◽  
...  

Sensitive probe of like-charge attraction: analyzing infrared spectra allows counting the number of cations involved in clusters of opposite (c–a) and like-charged (c–c) ions in ionic liquids. This approach is also applicable to molecular liquids.


2017 ◽  
Vol 4 (12) ◽  
pp. 171223 ◽  
Author(s):  
Kevin R. J. Lovelock

For ionic liquids (ILs), both the large number of possible cation + anion combinations and their ionic nature provide a unique challenge for understanding intermolecular interactions. Cohesive energy density, ced , is used to quantify the strength of intermolecular interactions for molecular liquids, and is determined using the enthalpy of vaporization. A critical analysis of the experimental challenges and data to obtain ced for ILs is provided. For ILs there are two methods to judge the strength of intermolecular interactions, due to the presence of multiple constituents in the vapour phase of ILs. Firstly, ced IP , where the ionic vapour constituent is neutral ion pairs, the major constituent of the IL vapour. Secondly, ced C+A , where the ionic vapour constituents are isolated ions. A ced IP dataset is presented for 64 ILs. For the first time an experimental ced C+A , a measure of the strength of the total intermolecular interaction for an IL, is presented. ced C+A is significantly larger for ILs than ced for most molecular liquids, reflecting the need to break all of the relatively strong electrostatic interactions present in ILs. However, the van der Waals interactions contribute significantly to IL volatility due to the very strong electrostatic interaction in the neutral ion pair ionic vapour. An excellent linear correlation is found between ced IP and the inverse of the molecular volume. A good linear correlation is found between IL ced IP and IL Gordon parameter (which are dependent primarily on surface tension). ced values obtained through indirect methods gave similar magnitude values to ced IP . These findings show that ced IP is very important for understanding IL intermolecular interactions, in spite of ced IP not being a measure of the total intermolecular interactions of an IL. In the outlook section, remaining challenges for understanding IL intermolecular interactions are outlined.


2011 ◽  
Vol 13 (20) ◽  
pp. 9525 ◽  
Author(s):  
Michael Heinrich Rausch ◽  
Julia Lehmann ◽  
Alfred Leipertz ◽  
Andreas Paul Fröba

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