As a new class of electrodes, MXenes have shown excellent performance in supercapacitors. At the same time, ionic liquid (IL) electrolytes with wider electrochemical windows are expected to substantially increase the supercapacitor capacitance. The combination of MXenes and ILs is promising for energy storage devices with a high energy density and power density. The studies have indicated that the surface terminations of MXenes and the functional groups of ILs, can both strongly influence the supercapacitor's performance. However, studies at the molecular level are still lacking. In this work, we performed molecular dynamics simulations to investigate the interfacial structures and their influence on the energy storage mechanism. The result...
The impact of cell voltage on the capacitance of practical electrochemical supercapacitors is a phen...
Multiple ion layer formation associated with molecular orientation alteration and hydrogen bonding i...
We have investigated the electrical double layer (EDL) structure at an interface between ionic liqui...
As a new class of electrodes, MXenes have shown excellent performance in supercapacitors. At the sam...
Understanding the ionic liquid (IL)-electrode interface is imperative for the applications of superc...
Understanding ionic liquid (IL)-electrode interface is of great significance to the design of electr...
The performance of supercapacitors is determined by the electrical double layers (EDLs) formed at el...
Room-temperature ionic liquids (RTILs) are an emerging class of electrolytes for supercapacitors. In...
MoS2 nanomaterials and ionic liquids (ILs) have attracted tremendous interest as the prime electrode...
In this work, we investigate the effect of the cation structure on the structure and dynamics of the...
We use molecular dynamics simulations to explore the impact of a non-ionic solvent on the structural...
We performed constant-potential molecular dynamics simulations to analyse the double-layer structure...
Molecular dynamics simulations are carried out to investigate the structure and capacitance of the e...
The interaction of ionic liquids with a solid surface is of particular interest due to electrochemic...
The electrical double layer (EDL) structure formed by ions at a charged surface, which is the key to...
The impact of cell voltage on the capacitance of practical electrochemical supercapacitors is a phen...
Multiple ion layer formation associated with molecular orientation alteration and hydrogen bonding i...
We have investigated the electrical double layer (EDL) structure at an interface between ionic liqui...
As a new class of electrodes, MXenes have shown excellent performance in supercapacitors. At the sam...
Understanding the ionic liquid (IL)-electrode interface is imperative for the applications of superc...
Understanding ionic liquid (IL)-electrode interface is of great significance to the design of electr...
The performance of supercapacitors is determined by the electrical double layers (EDLs) formed at el...
Room-temperature ionic liquids (RTILs) are an emerging class of electrolytes for supercapacitors. In...
MoS2 nanomaterials and ionic liquids (ILs) have attracted tremendous interest as the prime electrode...
In this work, we investigate the effect of the cation structure on the structure and dynamics of the...
We use molecular dynamics simulations to explore the impact of a non-ionic solvent on the structural...
We performed constant-potential molecular dynamics simulations to analyse the double-layer structure...
Molecular dynamics simulations are carried out to investigate the structure and capacitance of the e...
The interaction of ionic liquids with a solid surface is of particular interest due to electrochemic...
The electrical double layer (EDL) structure formed by ions at a charged surface, which is the key to...
The impact of cell voltage on the capacitance of practical electrochemical supercapacitors is a phen...
Multiple ion layer formation associated with molecular orientation alteration and hydrogen bonding i...
We have investigated the electrical double layer (EDL) structure at an interface between ionic liqui...