scholarly journals Potential Dependence of the Ionic Structure at the Ionic Liquid/water Interface Studied Using MD Simulation

Author(s):  
Kosuke Ishii ◽  
Tetsuo Sakka ◽  
Naoya Nishi

<div> <p>The structure at the electrochemical liquid/liquid interface between water (W) and trioctylmethylammonium bis (nonafluorobutanesulfonyl)amide, a hydrophobic ionic liquid (IL), was studied using molecular dynamics (MD) simulation in which the interfacial potential difference was controlled. On the IL side of the IL|W interface, ionic multilayers were found in the number density distribution of IL ions whereas monolayer-thick charge accumulation was found in the charge density distribution. This suggests that the potential screening is completed within the first ionic layer and the effect of overlayers on the potential is marginal. The W side of the interface showed the diffuse electric double layer as expected, and also unveiled a density depletion layer, indicating that the IL surface is hydrophobic enough to be repelled by water. The IL ions in the first ionic layer showed anisotropic orientation even at the potential of zero charge, in which the polar moieties were oriented to the W side and the non-polar moieties preferred parallel to the interface. When an electric field is applied across the interface so that the IL ions are more accumulated, the non-polar moieties changed the parallel preference to more oriented to the IL side due to the dipolar nature of the IL ions. The ionic orientations at the IL|W interface were compared with those at other two IL interfaces, the vacuum and graphene interfaces of the IL. The parallel preference of the non-polar moieties was similar at the IL|graphene interface but different from the perpendicular orientation toward the vacuum side at the IL|vacuum interface. The comparison suggests that water behaves like a wall repelling IL ions like a solid electrode.</p></div>

2021 ◽  
Author(s):  
Kosuke Ishii ◽  
Tetsuo Sakka ◽  
Naoya Nishi

<div> <p>The structure at the electrochemical liquid/liquid interface between water (W) and trioctylmethylammonium bis (nonafluorobutanesulfonyl)amide, a hydrophobic ionic liquid (IL), was studied using molecular dynamics (MD) simulation in which the interfacial potential difference was controlled. On the IL side of the IL|W interface, ionic multilayers were found in the number density distribution of IL ions whereas monolayer-thick charge accumulation was found in the charge density distribution. This suggests that the potential screening is completed within the first ionic layer and the effect of overlayers on the potential is marginal. The W side of the interface showed the diffuse electric double layer as expected, and also unveiled a density depletion layer, indicating that the IL surface is hydrophobic enough to be repelled by water. The IL ions in the first ionic layer showed anisotropic orientation even at the potential of zero charge, in which the polar moieties were oriented to the W side and the non-polar moieties preferred parallel to the interface. When an electric field is applied across the interface so that the IL ions are more accumulated, the non-polar moieties changed the parallel preference to more oriented to the IL side due to the dipolar nature of the IL ions. The ionic orientations at the IL|W interface were compared with those at other two IL interfaces, the vacuum and graphene interfaces of the IL. The parallel preference of the non-polar moieties was similar at the IL|graphene interface but different from the perpendicular orientation toward the vacuum side at the IL|vacuum interface. The comparison suggests that water behaves like a wall repelling IL ions like a solid electrode.</p></div>


2018 ◽  
Vol 10 (2) ◽  
pp. 156-163 ◽  
Author(s):  
Eric J. Smoll ◽  
Simon M. Purcell ◽  
Lucia D’Andrea ◽  
John M. Slattery ◽  
Duncan W. Bruce ◽  
...  

2009 ◽  
Vol 64 (3-4) ◽  
pp. 263-268 ◽  
Author(s):  
Andrzej Lewandowski ◽  
Tomasz Majkowski ◽  
Maciej Galinski

Abstract Electrocapillary curves (surface tension γ as a function of the electrode potential E) for a series of room-temperature ionic liquids (RTILs) were measured using a mercury dropping electrode with the drop-weight (drop-volume) technique. The curves γ = f (E) for the Hg/RTIL interface have one maximum and may be approximated with a polynomial of sixth-order. There are no ‘humps’ in the curves. The interfacial tension of the Hg/RTIL system changes with potential E in a monotonic way. The second derivative of γ = f (E) leads to a polynomial of fourth order, indicating the capacitance of the Hg/RTIL interface. The potential of zero charge is within a relatively narrow range. The specific capacitance at the minimum is of the order 10 μF/cm2


2016 ◽  
Vol 43 (9) ◽  
pp. 1161-1173 ◽  
Author(s):  
Girolamo Casella ◽  
Valerio Causin ◽  
Federico Rastrelli ◽  
Giacomo Saielli

Langmuir ◽  
2020 ◽  
Vol 36 (40) ◽  
pp. 11798-11808
Author(s):  
Deshuai Yang ◽  
Yiping Huang ◽  
Xueping Wang ◽  
Ruiyao He ◽  
Guobing Zhou ◽  
...  

2019 ◽  
Vol 58 (43) ◽  
pp. 20109-20115 ◽  
Author(s):  
Cheng Qian ◽  
Bin Ding ◽  
Zhiwei Wu ◽  
Weilu Ding ◽  
Feng Huo ◽  
...  

ChemPhysChem ◽  
2011 ◽  
Vol 12 (14) ◽  
pp. 2502-2502
Author(s):  
Thomas Waldmann ◽  
Hsin-Hui Huang ◽  
Harry E. Hoster ◽  
Oliver Höfft ◽  
Frank Endres ◽  
...  

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