Ionic liquids (IL) exhibit a remarkably diverse interfacial chemistry, with multiple interfacial layers present at the IL/solid interface. Ionic liquids (ILs) are pure salts with melting points typically less than 100°C. It has remarkable physical properties, which include wide electrochemical stability windows, high ionic conductivity and negligible vapor pressure. The adsorption strength of ILs onto solid surfaces is much higher than for typical organic solvents or water. The structure and composition of the interfacial layer can be tuned by varying the surface potential and the ionic structure, and by addition of solutes. This allows us to envision that IL interfacial properties can be readily matched to a particular application once the...
Virtually, every investigation and application of ionic liquids (ILs) involves gas-liquid, liquid-li...
Room temperature ionic liquids (ILs) can create a strong accumulation of charges at solid interfaces...
Understanding the electric field-dependent structure variation of ionic liquids (ILs) near electrode...
Ionic liquids combine the properties of molten salts (they are liquids composed predominantly of ion...
Ionic liquids are organic salts that are in liquid phase at room temperature. Their wide liquidus ra...
Studies of interfacial and electronic structure properties of Ionic Liquids (ILs) may lead to develo...
Ionic liquids’ (ILs) remarkable and tunable physicochemical properties mean they have distinct perfo...
Ionic liquids (ILs) have become highly popular solvents over the last two decades in a range of fiel...
Room temperature ionic liquids (ILs) can create a strong accumulation of charges at solid interfaces...
Room temperature ionic liquids (ILs) can create a strong accumulation of charges at solid interfaces...
Room temperature ionic liquids (ILs) can create a strong accumulation of charges at solid interfaces...
Room temperature ionic liquids (ILs) can create a strong accumulation of charges at solid interfaces...
Room temperature ionic liquids (ILs) can create a strong accumulation of charges at solid interfaces...
Room temperature ionic liquids (ILs) can create a strong accumulation of charges at solid interfaces...
Room temperature ionic liquids (ILs) can create a strong accumulation of charges at solid interfaces...
Virtually, every investigation and application of ionic liquids (ILs) involves gas-liquid, liquid-li...
Room temperature ionic liquids (ILs) can create a strong accumulation of charges at solid interfaces...
Understanding the electric field-dependent structure variation of ionic liquids (ILs) near electrode...
Ionic liquids combine the properties of molten salts (they are liquids composed predominantly of ion...
Ionic liquids are organic salts that are in liquid phase at room temperature. Their wide liquidus ra...
Studies of interfacial and electronic structure properties of Ionic Liquids (ILs) may lead to develo...
Ionic liquids’ (ILs) remarkable and tunable physicochemical properties mean they have distinct perfo...
Ionic liquids (ILs) have become highly popular solvents over the last two decades in a range of fiel...
Room temperature ionic liquids (ILs) can create a strong accumulation of charges at solid interfaces...
Room temperature ionic liquids (ILs) can create a strong accumulation of charges at solid interfaces...
Room temperature ionic liquids (ILs) can create a strong accumulation of charges at solid interfaces...
Room temperature ionic liquids (ILs) can create a strong accumulation of charges at solid interfaces...
Room temperature ionic liquids (ILs) can create a strong accumulation of charges at solid interfaces...
Room temperature ionic liquids (ILs) can create a strong accumulation of charges at solid interfaces...
Room temperature ionic liquids (ILs) can create a strong accumulation of charges at solid interfaces...
Virtually, every investigation and application of ionic liquids (ILs) involves gas-liquid, liquid-li...
Room temperature ionic liquids (ILs) can create a strong accumulation of charges at solid interfaces...
Understanding the electric field-dependent structure variation of ionic liquids (ILs) near electrode...