Ionic-liquid gates have a high carrier density due to their atomically thin electric double layer (EDL) and extremely large geometrical capacitance C-g. However, a high carrier density in graphene has not been achieved even with ionic-liquid gates because the EDL capacitance C-EDL between the ionic liquid and graphene involves the series connection of C-g and the quantum capacitance C-q, which is proportional to the density of states. We investigated the variables that determine C-EDL at the molecular level by varying the number of graphene layers n and thereby optimising C-q. The C-EDL value is governed by C-q at n, 4, and by C-g at n > 4. This transition with n indicates a composite nature for C-EDL. Our finding clarifies a universal prin...
Understanding and controlling the electrical response at a complex electrode–electrolyte interface i...
Graphene-based electrodes have been widely tested and used in electrochemical double layer capacitor...
Low-energy density has long been the major limitation to the application of supercapacitors. Introdu...
Ionic-liquid gates have a high carrier density due to their atomically thin electric double layer (E...
Molecular dynamics simulations are carried out to investigate the structure and capacitance of the e...
Chemically doped graphene-based materials have recently been explored as a means to improve the perf...
Multilayer graphenes have been widely used as active materials for electric double-layer capacitors ...
Experimental electrical double-layer capacitances of porous carbon electrodes fall below ideal value...
There are several advantages to developing electrochemical double-layer capacitors (EDLC) or superca...
Quantum capacitance of electrolyte-gated bilayer graphene field-effect transistors is investigated i...
International audienceGraphene-based carbon materials are promising candidates for electrical double...
International audienceGraphene-based carbon materials are promising candidates for electrical double...
International audienceGraphene-based carbon materials are promising candidates for electrical double...
International audienceGraphene-based carbon materials are promising candidates for electrical double...
University of Minnesota Ph.D. dissertation. August 2011. Major: Physics. Advisor: Boris I. Shklovski...
Understanding and controlling the electrical response at a complex electrode–electrolyte interface i...
Graphene-based electrodes have been widely tested and used in electrochemical double layer capacitor...
Low-energy density has long been the major limitation to the application of supercapacitors. Introdu...
Ionic-liquid gates have a high carrier density due to their atomically thin electric double layer (E...
Molecular dynamics simulations are carried out to investigate the structure and capacitance of the e...
Chemically doped graphene-based materials have recently been explored as a means to improve the perf...
Multilayer graphenes have been widely used as active materials for electric double-layer capacitors ...
Experimental electrical double-layer capacitances of porous carbon electrodes fall below ideal value...
There are several advantages to developing electrochemical double-layer capacitors (EDLC) or superca...
Quantum capacitance of electrolyte-gated bilayer graphene field-effect transistors is investigated i...
International audienceGraphene-based carbon materials are promising candidates for electrical double...
International audienceGraphene-based carbon materials are promising candidates for electrical double...
International audienceGraphene-based carbon materials are promising candidates for electrical double...
International audienceGraphene-based carbon materials are promising candidates for electrical double...
University of Minnesota Ph.D. dissertation. August 2011. Major: Physics. Advisor: Boris I. Shklovski...
Understanding and controlling the electrical response at a complex electrode–electrolyte interface i...
Graphene-based electrodes have been widely tested and used in electrochemical double layer capacitor...
Low-energy density has long been the major limitation to the application of supercapacitors. Introdu...