Ionic liquid mixtures show promise as electrolytes for supercapacitors with nanoporous electrodes. Herein, we investigate theoretically and with experiments how binary electrolytes comprising a common anion and two types of differently-sized cations affect capacitive energy storage. We find that such electrolytes can enhance the capacitance of single nanopores and nanoporous electrodes under potential differences negative relative to the potential of zero charge. For a two-electrode cell, however, they are beneficial only at low and intermediate cell voltages, while a neat ionic liquid performs better at higher voltages. We reveal subtle effects of how the distribution of pores accessible to different types of ions correlates with charge st...
Well-tailored mixtures of distinct ionic liquids can act as optimal electrolytes that extend the ope...
The impact of cell voltage on the capacitance of practical electrochemical supercapacitors is a phen...
Nano-porous electrodes combined with ionic liquids (ILs) are widely favored to promote the energy de...
The electric double-layer capacitor (EDLC), also known as the supercapacitor, offers superior power ...
We investigate the effects of pore size and ion adsorption on the room-temperature ionic liquid capa...
Ion–ion interactions in supercapacitor (SC) electrolytes are considered to have significant influenc...
Nanoporous carbon-based supercapacitors store electricity through adsorption of ions from the electr...
Ion–ion interactions in supercapacitor (SC) electrolytes are considered to have significant influenc...
International audienceNanoporous carbon-based supercapacitors store electricity through adsorption o...
We discuss the nonlinear effects and efficiency of charge storage in supercapacitors with nanoporous...
Electrochemical capacitors store electrical energy physically in the electrical double layers at the...
Nanoporous carbon-based supercapacitors store electricity through adsorption of ions from the electr...
Room-temperature ionic liquids (RTILs) have shown great potential in promoting the widespread applic...
Although room temperature ionic liquids (ILs) have emerged as potential next-generation electrolytes...
Well-tailored mixtures of distinct ionic liquids can act as optimal electrolytes that extend the ope...
The impact of cell voltage on the capacitance of practical electrochemical supercapacitors is a phen...
Nano-porous electrodes combined with ionic liquids (ILs) are widely favored to promote the energy de...
The electric double-layer capacitor (EDLC), also known as the supercapacitor, offers superior power ...
We investigate the effects of pore size and ion adsorption on the room-temperature ionic liquid capa...
Ion–ion interactions in supercapacitor (SC) electrolytes are considered to have significant influenc...
Nanoporous carbon-based supercapacitors store electricity through adsorption of ions from the electr...
Ion–ion interactions in supercapacitor (SC) electrolytes are considered to have significant influenc...
International audienceNanoporous carbon-based supercapacitors store electricity through adsorption o...
We discuss the nonlinear effects and efficiency of charge storage in supercapacitors with nanoporous...
Electrochemical capacitors store electrical energy physically in the electrical double layers at the...
Nanoporous carbon-based supercapacitors store electricity through adsorption of ions from the electr...
Room-temperature ionic liquids (RTILs) have shown great potential in promoting the widespread applic...
Although room temperature ionic liquids (ILs) have emerged as potential next-generation electrolytes...
Well-tailored mixtures of distinct ionic liquids can act as optimal electrolytes that extend the ope...
The impact of cell voltage on the capacitance of practical electrochemical supercapacitors is a phen...
Nano-porous electrodes combined with ionic liquids (ILs) are widely favored to promote the energy de...