The quartz crystal microbalance (QCM) has been used to study how the interfacial layer of an ionic liquid dissolved in a polar oil at low weight percentages responds to changes in applied potential. The changes in surface composition at the QCM gold surface depend on both the magnitude and sign of the applied potential. The time-resolved response indicates that the relaxation kinetics are limited by the diffusion of ions in the interfacial region and not in the bulk, since there is no concentration dependence. The measured mass changes cannot be explained only in terms of simple ion exchange; the relative molecular volumes of the ions and the density changes in response to ion exclusion must be considered. The relaxation behavior of the pot...
The interfacial dielectric relaxation of ionic liquids (ILs) at the gold electrode interface has bee...
Ionic liquids (IL) exhibit a remarkably diverse interfacial chemistry, with multiple interfacial lay...
Electrolyte solutions with high concentrations of ions are prevalent in biological systems and energ...
The quartz crystal microbalance (QCM) has been used to study how the interfacial layer of an ionic l...
Electrochemical quartz crystal microbalance has been employed to investigate electro-responsiveness ...
Electrochemical quartz crystal microbalance has been used to measure changes in the composition of t...
Neutron reflectivity (NR) measurements have been employed to study the interfacial structuring and c...
The structure and interaction of ionic liquids (ILs) influence their interfacial composition, and th...
The structure and interaction of ionic liquids (ILs) influence their interfacial composition, and th...
As liquid media at a temperature less than 100 °C that possess some level of ionic conductivity,...
AbstractA quartz crystal microbalance with dissipation measurement (QCM-D) was employed for probing ...
The current understanding of intermolecular and interfacial forces in concentrated electrolytes is l...
The structure of the interface between room temperature ionic liquids (RTILs) and an Au electrode ch...
The response of the electrochemical quartz crystal microbalance (EQCM) was studied in 0.1 M HC1O4, K...
The ubiquity of electrolytes is exemplified by the variety of fields in which they are encountered i...
The interfacial dielectric relaxation of ionic liquids (ILs) at the gold electrode interface has bee...
Ionic liquids (IL) exhibit a remarkably diverse interfacial chemistry, with multiple interfacial lay...
Electrolyte solutions with high concentrations of ions are prevalent in biological systems and energ...
The quartz crystal microbalance (QCM) has been used to study how the interfacial layer of an ionic l...
Electrochemical quartz crystal microbalance has been employed to investigate electro-responsiveness ...
Electrochemical quartz crystal microbalance has been used to measure changes in the composition of t...
Neutron reflectivity (NR) measurements have been employed to study the interfacial structuring and c...
The structure and interaction of ionic liquids (ILs) influence their interfacial composition, and th...
The structure and interaction of ionic liquids (ILs) influence their interfacial composition, and th...
As liquid media at a temperature less than 100 °C that possess some level of ionic conductivity,...
AbstractA quartz crystal microbalance with dissipation measurement (QCM-D) was employed for probing ...
The current understanding of intermolecular and interfacial forces in concentrated electrolytes is l...
The structure of the interface between room temperature ionic liquids (RTILs) and an Au electrode ch...
The response of the electrochemical quartz crystal microbalance (EQCM) was studied in 0.1 M HC1O4, K...
The ubiquity of electrolytes is exemplified by the variety of fields in which they are encountered i...
The interfacial dielectric relaxation of ionic liquids (ILs) at the gold electrode interface has bee...
Ionic liquids (IL) exhibit a remarkably diverse interfacial chemistry, with multiple interfacial lay...
Electrolyte solutions with high concentrations of ions are prevalent in biological systems and energ...