The electrical double layer (EDL) structure formed by ions at a charged surface, which is the key to determining the performance of supercapacitors, has been extensively studied for many monocationic ionic liquids (MILs). However, it is not known what effect replacing MILs with dicationic ionic liquids (DILs) will have on the EDL structure. In this work, the interfacial structure and electrochemical performance of DILs [C<sub><i>n</i></sub>(mim)<sub>2</sub>](BF<sub>4</sub>)<sub>2</sub> (<i>n</i> = 3, 6, 9) and [C<sub>6</sub>(mim)<sub>2</sub>](Tf<sub>2</sub>N)<sub>2</sub> were investigated using classical molecular dynamics (MD) simulation for comparison with their monocationic counterparts. Different EDL structures formed by DILs and MILs...
In order to understand basic principles of the double layer formation in room temperature ionic liqu...
As a new class of electrodes, MXenes have shown excellent performance in supercapacitors. At the sam...
Room temperature ionic liquids (ILs) can create a strong accumulation of charges at solid interfaces...
We report on the molecular dynamics simulations of the electrical double layers (EDLs) at the interf...
Recent experiments have revealed that onion-like carbons (OLCs) offer high energy density and chargi...
Molecular dynamics simulations are carried out to investigate the structure and capacitance of the e...
Ionic liquids (IL) are very promising “solvent-free” electrolytes for high-voltage double-layer supe...
Understanding the ionic liquid (IL)-electrode interface is imperative for the applications of superc...
The interaction of ionic liquids with a solid surface is of particular interest due to electrochemic...
We experimentally observed for the first time a bell-shaped (convex parabolic) differential capacita...
Room-temperature ionic liquids (RTILs) are an emerging class of electrolytes for supercapacitors. In...
The performance of electric double-layer capacitors is strongly influenced by the choice of electrol...
The interfaces formed at glassy carbon electrodes in three low-temperature ionic liquids (1-methyl-3
This study describes the causes of a U-like capacitance−potential (C−E) curve observed at nonmetalli...
We have investigated the electrical double layer (EDL) structure at an interface between ionic liqui...
In order to understand basic principles of the double layer formation in room temperature ionic liqu...
As a new class of electrodes, MXenes have shown excellent performance in supercapacitors. At the sam...
Room temperature ionic liquids (ILs) can create a strong accumulation of charges at solid interfaces...
We report on the molecular dynamics simulations of the electrical double layers (EDLs) at the interf...
Recent experiments have revealed that onion-like carbons (OLCs) offer high energy density and chargi...
Molecular dynamics simulations are carried out to investigate the structure and capacitance of the e...
Ionic liquids (IL) are very promising “solvent-free” electrolytes for high-voltage double-layer supe...
Understanding the ionic liquid (IL)-electrode interface is imperative for the applications of superc...
The interaction of ionic liquids with a solid surface is of particular interest due to electrochemic...
We experimentally observed for the first time a bell-shaped (convex parabolic) differential capacita...
Room-temperature ionic liquids (RTILs) are an emerging class of electrolytes for supercapacitors. In...
The performance of electric double-layer capacitors is strongly influenced by the choice of electrol...
The interfaces formed at glassy carbon electrodes in three low-temperature ionic liquids (1-methyl-3
This study describes the causes of a U-like capacitance−potential (C−E) curve observed at nonmetalli...
We have investigated the electrical double layer (EDL) structure at an interface between ionic liqui...
In order to understand basic principles of the double layer formation in room temperature ionic liqu...
As a new class of electrodes, MXenes have shown excellent performance in supercapacitors. At the sam...
Room temperature ionic liquids (ILs) can create a strong accumulation of charges at solid interfaces...