Understanding and manipulating nano-confined ionic liquids (ILs) has tremendous implications in nanotechnology and chemical engineering. Here, a peculiar growth phenomenon of a nano-confined [Bmim][NTFI] ionic liquid is revealed by utilizing two-dimensional channels in mica. The intercalated ILs underwent liquid-solid transition and self-assembled into a self-similar two-dimensional crystal in an epitaxial relation with the confining material. The terraced IL crystals, ranging from monolayer to bilayer to several dozen layers, are characterized by unexpectedly large areas extending to mm-scale and enhanced thermal stability with a melting temperature 73 K higher than that of the corresponding bulk IL. The notable asymmetric feature of the l...
We report the direct observation of solidlike ordering at room temperature of thin films of [Bmim][N...
Phase behaviors of the liquids in nanospaces are of particular interest to understand the thermodyna...
Ionic liquids can be intricately nanostructured in the bulk and at interfaces resulting from a delic...
We report on the modification of the electric properties of the imidazolium-based [BMIM][NTf2] ionic...
We report on the modification of the electric properties of the imidazolium-based [BMIM] [NTf2] ioni...
Nanoconfinement is a solution to overcome high cost, high viscosity and slow diffusion rate of bulk ...
We report on the modification of the electric properties of the imidazolium-based [BMIM][NTf<sub>2<...
Studies of 1-hexyl-3-methyl-imidazolium ethylsulfate ([HMIM] EtSO4) using an extended surface forces...
Ionic liquids (ILs) are a class of new green materials that have attracted extensive attention in re...
Phase behaviors of the liquids in nanospaces are of particular interest to understand the thermodyna...
Understanding the structural transition of ionic liquids (ILs) confined in a nanospace is imperative...
The confinement of liquids to thin films can lead to dramatic changes in their structural arrangemen...
[Emim]Br ionic liquid was confined in porous SiO2 nanoparticles. It is shown that the confinement in...
Recent experiments and computer simulation studies on nanoconfined ionic liquids (ILs) have shifted ...
Over recent years the Surface Force Apparatus (SFA) has been used to carry out model experiments rev...
We report the direct observation of solidlike ordering at room temperature of thin films of [Bmim][N...
Phase behaviors of the liquids in nanospaces are of particular interest to understand the thermodyna...
Ionic liquids can be intricately nanostructured in the bulk and at interfaces resulting from a delic...
We report on the modification of the electric properties of the imidazolium-based [BMIM][NTf2] ionic...
We report on the modification of the electric properties of the imidazolium-based [BMIM] [NTf2] ioni...
Nanoconfinement is a solution to overcome high cost, high viscosity and slow diffusion rate of bulk ...
We report on the modification of the electric properties of the imidazolium-based [BMIM][NTf<sub>2<...
Studies of 1-hexyl-3-methyl-imidazolium ethylsulfate ([HMIM] EtSO4) using an extended surface forces...
Ionic liquids (ILs) are a class of new green materials that have attracted extensive attention in re...
Phase behaviors of the liquids in nanospaces are of particular interest to understand the thermodyna...
Understanding the structural transition of ionic liquids (ILs) confined in a nanospace is imperative...
The confinement of liquids to thin films can lead to dramatic changes in their structural arrangemen...
[Emim]Br ionic liquid was confined in porous SiO2 nanoparticles. It is shown that the confinement in...
Recent experiments and computer simulation studies on nanoconfined ionic liquids (ILs) have shifted ...
Over recent years the Surface Force Apparatus (SFA) has been used to carry out model experiments rev...
We report the direct observation of solidlike ordering at room temperature of thin films of [Bmim][N...
Phase behaviors of the liquids in nanospaces are of particular interest to understand the thermodyna...
Ionic liquids can be intricately nanostructured in the bulk and at interfaces resulting from a delic...