Experimental electrical double-layer capacitances of porous carbon electrodes fall below ideal values, thus limiting the practical energy densities of carbon-based electrical double-layer capacitors. Here we investigate the origin of this behaviour by measuring the electrical double-layer capacitance in one to five-layer graphene. We find that the capacitances are suppressed near neutrality, and are anomalously enhanced for thicknesses below a few layers. We attribute the first effect to quantum capacitance effects near the point of zero charge, and the second to correlations between electrons in the graphene sheet and ions in the electrolyte. The large capacitance values imply gravimetric energy storage densities in the single-layer graphe...
Electric double-layer capacitors (EDLCs), as an indispensable part of renewable energy systems, stor...
In this paper we argue that supercapacitors are the best choice for energy storage in an intelligent...
We conduct molecular dynamics simulations of electrical double-layer capacitors (EDLCs) using a libr...
Experimental electrical double-layer capacitances of porous carbon electrodes fall below ideal value...
Supercapacitors are electrochemical energy storage devices known for their large power densities and...
Low-energy density has long been the major limitation to the application of supercapacitors. Introdu...
Supercapacitors are electrochemical energy storage devices known for their large power densities and...
Low-energy density has long been the major limitation to the application of supercapacitors. Introdu...
An alternate energy storage device for high power applications are supercapacitors. They store energ...
Supercapacitors cannot fulfill their potential as energy storage devices without substantially impro...
Carbon supercapacitors, which are energy storage devices that use ion adsorption on the surface of h...
Graphene has been heralded as a promising electrode material for high energy and power density elect...
Supercapacitors cannot fulfill their potential as energy storage devices without substantially impro...
In this paper we argue that supercapacitors are the best choice for energy storage in an intelligent...
Electrochemical capacitors are energy storage devices characterized by high power and long cycle lif...
Electric double-layer capacitors (EDLCs), as an indispensable part of renewable energy systems, stor...
In this paper we argue that supercapacitors are the best choice for energy storage in an intelligent...
We conduct molecular dynamics simulations of electrical double-layer capacitors (EDLCs) using a libr...
Experimental electrical double-layer capacitances of porous carbon electrodes fall below ideal value...
Supercapacitors are electrochemical energy storage devices known for their large power densities and...
Low-energy density has long been the major limitation to the application of supercapacitors. Introdu...
Supercapacitors are electrochemical energy storage devices known for their large power densities and...
Low-energy density has long been the major limitation to the application of supercapacitors. Introdu...
An alternate energy storage device for high power applications are supercapacitors. They store energ...
Supercapacitors cannot fulfill their potential as energy storage devices without substantially impro...
Carbon supercapacitors, which are energy storage devices that use ion adsorption on the surface of h...
Graphene has been heralded as a promising electrode material for high energy and power density elect...
Supercapacitors cannot fulfill their potential as energy storage devices without substantially impro...
In this paper we argue that supercapacitors are the best choice for energy storage in an intelligent...
Electrochemical capacitors are energy storage devices characterized by high power and long cycle lif...
Electric double-layer capacitors (EDLCs), as an indispensable part of renewable energy systems, stor...
In this paper we argue that supercapacitors are the best choice for energy storage in an intelligent...
We conduct molecular dynamics simulations of electrical double-layer capacitors (EDLCs) using a libr...