Ion–ion interactions in supercapacitor (SC) electrolytes are considered to have significant influence over the charging process and therefore the overall performance of the SC system. Current strategies used to weaken ionic interactions can enhance the power of SCs, but consequently, the energy density will decrease due to the increased distance between adjacent electrolyte ions at the electrode surface. Herein, we report on the simultaneous enhancement of the power and energy densities of a SC using an ionic mixture electrolyte with different types of ionic interactions. Two types of cations with stronger ionic interactions can be packed in a denser arrangement in mesopores to increase the capacitance, whereas only cations with weaker ioni...
Progress in low-dimensional carbon materials has intensified research on supercapacitors with nanost...
Electrolytes are one of the vital constituents of electrochemical energy storage devices and their p...
In recent years we have built up a theoretical framework which aims to explain ion specific effects ...
Ion–ion interactions in supercapacitor (SC) electrolytes are considered to have significant influenc...
Ionic liquid mixtures show promise as electrolytes for supercapacitors with nanoporous electrodes. H...
International audienceNanoporous carbon-based supercapacitors store electricity through adsorption o...
Nanoporous carbon-based supercapacitors store electricity through adsorption of ions from the electr...
Supercapacitors (or electric double-layer capacitors) are high-power energy storage devices that sto...
Supercapacitors (or electric double-layer capacitors) are high-power energy storage devices that sto...
Nano-porous electrodes combined with ionic liquids (ILs) are widely favored to promote the energy de...
The impact of cell voltage on the capacitance of practical electrochemical supercapacitors is a phen...
We investigate the effects of pore size and ion adsorption on the room-temperature ionic liquid capa...
A new theoretical framework is now available to help explain ion specific (Hofmeister) effects. All ...
Nanoporous carbon-based supercapacitors store electricity through adsorption of ions from the electr...
Progress in low-dimensional carbon materials has intensified research on supercapacitors with nanost...
Electrolytes are one of the vital constituents of electrochemical energy storage devices and their p...
In recent years we have built up a theoretical framework which aims to explain ion specific effects ...
Ion–ion interactions in supercapacitor (SC) electrolytes are considered to have significant influenc...
Ionic liquid mixtures show promise as electrolytes for supercapacitors with nanoporous electrodes. H...
International audienceNanoporous carbon-based supercapacitors store electricity through adsorption o...
Nanoporous carbon-based supercapacitors store electricity through adsorption of ions from the electr...
Supercapacitors (or electric double-layer capacitors) are high-power energy storage devices that sto...
Supercapacitors (or electric double-layer capacitors) are high-power energy storage devices that sto...
Nano-porous electrodes combined with ionic liquids (ILs) are widely favored to promote the energy de...
The impact of cell voltage on the capacitance of practical electrochemical supercapacitors is a phen...
We investigate the effects of pore size and ion adsorption on the room-temperature ionic liquid capa...
A new theoretical framework is now available to help explain ion specific (Hofmeister) effects. All ...
Nanoporous carbon-based supercapacitors store electricity through adsorption of ions from the electr...
Progress in low-dimensional carbon materials has intensified research on supercapacitors with nanost...
Electrolytes are one of the vital constituents of electrochemical energy storage devices and their p...
In recent years we have built up a theoretical framework which aims to explain ion specific effects ...