The increasing energy demands of modern society require a deep understanding of the properties of energy storage materials, as well as the tuning of their performance. We show that the capacitance of graphene oxide (GO) can be precisely tuned using a simple electrochemical reduction route. In situ resistance measurements, in combination with cyclic voltammetry measurements and Raman spectroscopy, have shown that upon reduction GO is irreversibly deoxygenated, which is further accompanied by structural ordering and an increase in electrical conductivity. The capacitance is maximized when the concentration of oxygen functional groups is properly balanced with the conductivity. Any further reduction and deoxygenation leads to a gradual loss of...
Graphene materials are generally prepared from the exfoliation of graphite oxide (GO) to graphene ox...
Strategies to synthesize reduced graphene oxide (rGO) abound but, in most studies, research teams se...
Strategies to synthesize reduced graphene oxide (rGO) abound but, in most studies, research teams se...
The increasing energy demands of modern society require a deep understanding of the properties of en...
The increasing energy demands of modern society require a deep understanding of the properties of en...
International audienceRevealed by an integrated electrogravimetric and viscoelastic method, slightly...
Graphene oxide (GO)-based materials have been considered for potential energy storage applications, ...
Revealed by an integrated electrogravimetric and viscoelastic method, slightly electrochemically red...
Graphene has been heralded as a promising electrode material for high energy and power density elect...
We report a facile and green route to reduce graphite oxide using urea as the reducing agent. UV-Vis...
In the present study we have evaluated the contribution of particular oxygen functional groups in th...
In the present study we have evaluated the contribution of particular oxygen functional groups in th...
Graphene materials are generally prepared from the exfoliation of graphite oxide (GO) to graphene ox...
Face-to-face restacking is one of the main reasons for low surface utilization of multilayered graph...
We report an electrochemical oxidation route to tunable C/O ratios in the graphene framework, creati...
Graphene materials are generally prepared from the exfoliation of graphite oxide (GO) to graphene ox...
Strategies to synthesize reduced graphene oxide (rGO) abound but, in most studies, research teams se...
Strategies to synthesize reduced graphene oxide (rGO) abound but, in most studies, research teams se...
The increasing energy demands of modern society require a deep understanding of the properties of en...
The increasing energy demands of modern society require a deep understanding of the properties of en...
International audienceRevealed by an integrated electrogravimetric and viscoelastic method, slightly...
Graphene oxide (GO)-based materials have been considered for potential energy storage applications, ...
Revealed by an integrated electrogravimetric and viscoelastic method, slightly electrochemically red...
Graphene has been heralded as a promising electrode material for high energy and power density elect...
We report a facile and green route to reduce graphite oxide using urea as the reducing agent. UV-Vis...
In the present study we have evaluated the contribution of particular oxygen functional groups in th...
In the present study we have evaluated the contribution of particular oxygen functional groups in th...
Graphene materials are generally prepared from the exfoliation of graphite oxide (GO) to graphene ox...
Face-to-face restacking is one of the main reasons for low surface utilization of multilayered graph...
We report an electrochemical oxidation route to tunable C/O ratios in the graphene framework, creati...
Graphene materials are generally prepared from the exfoliation of graphite oxide (GO) to graphene ox...
Strategies to synthesize reduced graphene oxide (rGO) abound but, in most studies, research teams se...
Strategies to synthesize reduced graphene oxide (rGO) abound but, in most studies, research teams se...