There is an urgent need for a simple and up-scalable method for the preparation of supercapacitor electrode materials due to increasing global energy consumption worldwide. We have discovered that fluorographene exhibits great potential for the development of new kinds of supercapacitors aimed at practical applications. We have shown that time control of isothermal reduction of fluorographite at 450 °C under a hydrogen atmosphere led to the fine-tuning of fluorine content and electronic properties of the resulting fluorographene derivatives. Charge transfer resistances (Rct) of the thermally reduced fluorographenes (TRFGs) were decreased with respect to the pristine fluorographene; however, the Rctvs. time-of-reduction plot showed a v-shape...
The ElectroGraph project follows an integrated, technology driven approach in development of novel m...
The plasma treatment of few-layer graphene (FLG) was investigated for the effect on the performance ...
Supercapacitors are ideal tools for energy storage due to their wide range of operation temperatures...
Owing to its high surface area and excellent conductivity, graphene is considered an efficient elect...
Fluorographene, a cousin of graphene, not only inherits the excellent mechanical properties of graph...
One of the major elements in determining the supercapacitor performance is the development of a nano...
Supercapacitors offer a promising alternative to batteries, especially due to their excellent power ...
Charge storage in supercapacitors is strongly related to the bond characteristics and electronic str...
International audienceIn this paper, porous partially fluorinated graphene (PFG) for supercapacitors...
Two few-layer graphene materials, strongly distinguished in structure, were compared as electrode m...
ElectroGraph: Graphene-based Electrodes for Applicatioin in Supercapacitors. Flexible, reliable and ...
Electrochemical double layer capacitors (supercapacitors) are expected to play a significant role in...
Fluorographene, formally a two-dimensional stoichiometric graphene derivative, attracted remarkablea...
For the first time, we have shown a novel supercapacitor system with a graphene paper electrode in t...
Present state-of-the-art graphene-based electrodes for supercapacitors remain far from commercial re...
The ElectroGraph project follows an integrated, technology driven approach in development of novel m...
The plasma treatment of few-layer graphene (FLG) was investigated for the effect on the performance ...
Supercapacitors are ideal tools for energy storage due to their wide range of operation temperatures...
Owing to its high surface area and excellent conductivity, graphene is considered an efficient elect...
Fluorographene, a cousin of graphene, not only inherits the excellent mechanical properties of graph...
One of the major elements in determining the supercapacitor performance is the development of a nano...
Supercapacitors offer a promising alternative to batteries, especially due to their excellent power ...
Charge storage in supercapacitors is strongly related to the bond characteristics and electronic str...
International audienceIn this paper, porous partially fluorinated graphene (PFG) for supercapacitors...
Two few-layer graphene materials, strongly distinguished in structure, were compared as electrode m...
ElectroGraph: Graphene-based Electrodes for Applicatioin in Supercapacitors. Flexible, reliable and ...
Electrochemical double layer capacitors (supercapacitors) are expected to play a significant role in...
Fluorographene, formally a two-dimensional stoichiometric graphene derivative, attracted remarkablea...
For the first time, we have shown a novel supercapacitor system with a graphene paper electrode in t...
Present state-of-the-art graphene-based electrodes for supercapacitors remain far from commercial re...
The ElectroGraph project follows an integrated, technology driven approach in development of novel m...
The plasma treatment of few-layer graphene (FLG) was investigated for the effect on the performance ...
Supercapacitors are ideal tools for energy storage due to their wide range of operation temperatures...