Studies of 1-hexyl-3-methyl-imidazolium ethylsulfate ([HMIM] EtSO4) using an extended surface forces apparatus show, for the first time, an ordered structure within the nanoconfined ionic liquid (IL) between mica surfaces that extends up to [similar]60 nm from the surface. Our measurements show the growth of this ordered IL-film upon successive nanoconfinements—the structural changes being irreversible upon removal of the confinement—and the response of the structure to shear. The compressibility of this system is lower than that typically measured for ILs, while creep takes place during shear, both findings supporting a long-range liquid-to-solid transition. AFM (sharp-tip) studies of [HMIM] EtSO4 on mica only reveal [similar]2 surface IL-...
International audienceRecent reports of surface forces across nanoconfined ionic liquids have reveal...
A unique, but unifying, feature of ionic liquids (ILs) is that they are nanostructured on the length...
By applying a small-amplitude (∼200 pm) oscillation to an atomic force microscopy probe during force...
With reference to our previous surface-force study on 1-hexyl-3-methylimidazolium ethylsulfate ([HMI...
We have investigated the influence of ambient humidity on the nanoconfined structure and response to...
Over recent years the Surface Force Apparatus (SFA) has been used to carry out model experiments rev...
We report high-resolution measurements of the forces between two atomically smooth solid surfaces ac...
We have investigated the influence of ambient humidity on the nanoconfined structure and response to...
Ionic liquids (ILs) are considered well suited alternatives for conventional electrolytes in next-ge...
We report on the modification of the electric properties of the imidazolium-based [BMIM] [NTf2] ioni...
We report the transformation of ionic liquid films from isotropic bulk to a fluid-ordered state over...
We report on the modification of the electric properties of the imidazolium-based [BMIM][NTf2] ionic...
Understanding and manipulating nano-confined ionic liquids (ILs) has tremendous implications in nano...
We report on the modification of the electric properties of the imidazolium-based [BMIM][NTf<sub>2<...
We report the direct observation of solidlike ordering at room temperature of thin films of [Bmim][N...
International audienceRecent reports of surface forces across nanoconfined ionic liquids have reveal...
A unique, but unifying, feature of ionic liquids (ILs) is that they are nanostructured on the length...
By applying a small-amplitude (∼200 pm) oscillation to an atomic force microscopy probe during force...
With reference to our previous surface-force study on 1-hexyl-3-methylimidazolium ethylsulfate ([HMI...
We have investigated the influence of ambient humidity on the nanoconfined structure and response to...
Over recent years the Surface Force Apparatus (SFA) has been used to carry out model experiments rev...
We report high-resolution measurements of the forces between two atomically smooth solid surfaces ac...
We have investigated the influence of ambient humidity on the nanoconfined structure and response to...
Ionic liquids (ILs) are considered well suited alternatives for conventional electrolytes in next-ge...
We report on the modification of the electric properties of the imidazolium-based [BMIM] [NTf2] ioni...
We report the transformation of ionic liquid films from isotropic bulk to a fluid-ordered state over...
We report on the modification of the electric properties of the imidazolium-based [BMIM][NTf2] ionic...
Understanding and manipulating nano-confined ionic liquids (ILs) has tremendous implications in nano...
We report on the modification of the electric properties of the imidazolium-based [BMIM][NTf<sub>2<...
We report the direct observation of solidlike ordering at room temperature of thin films of [Bmim][N...
International audienceRecent reports of surface forces across nanoconfined ionic liquids have reveal...
A unique, but unifying, feature of ionic liquids (ILs) is that they are nanostructured on the length...
By applying a small-amplitude (∼200 pm) oscillation to an atomic force microscopy probe during force...