Graphene research is currently at the frontier of electrochemistry. Many different graphene-based materials are employed by electrochemists as electrodes in sensing and in energy-storage devices. Because the methods for their preparation are inherently different, graphene materials are expected to exhibit different electrochemical behaviors depending on the functionalities and density of defects present. Electrochemical treatment of these “chemically modified graphenes” (CMGs) represents an easy approach to alter surface functionalities and consequently tune the electrochemical performance. Herein, we report a preliminary electrochemical characterization of four common chemically modified graphenes, namely: graphene oxide, graphite oxide, c...
We compared the differential pulse voltammetric performance of various chemically modified graphenes...
A simple and efficient method to enhance the quaternary nitrogen doping (N-doping) of graphene has b...
Graphene, chemically modified graphenes (CMGs), and two-dimensional layered nanomaterials have attra...
Graphene, a single layer of carbon atoms, has been in the center stage of materials research since i...
Graphene and graphene oxides are materials of significant interest in electrochemical devices such a...
Graphene and graphene oxides are materials of significant interest in electrochemical devices such a...
Graphene is widely recognized for its unique structural, physical and electronic properties that can...
Graphene is a 2D allotrope of carbon with exciting properties such as extremely high electronic cond...
Graphene is widely recognized for its unique structural, physical and electronic properties that can...
For the first time a critical analysis of the influence that four different graphene oxide reduction...
A main advantage of graphene oxide (GO) over other materials is the high tunability of its surface f...
For the first time a critical analysis of the influence that four different graphene oxide reduction...
A main advantage of graphene oxide (GO) over other materials is the high tunability of its surface f...
Graphene has been touted as the next "wonder material" for various applications, owing to its excell...
For the first time a critical analysis of the influence that four different graphene oxide reduction...
We compared the differential pulse voltammetric performance of various chemically modified graphenes...
A simple and efficient method to enhance the quaternary nitrogen doping (N-doping) of graphene has b...
Graphene, chemically modified graphenes (CMGs), and two-dimensional layered nanomaterials have attra...
Graphene, a single layer of carbon atoms, has been in the center stage of materials research since i...
Graphene and graphene oxides are materials of significant interest in electrochemical devices such a...
Graphene and graphene oxides are materials of significant interest in electrochemical devices such a...
Graphene is widely recognized for its unique structural, physical and electronic properties that can...
Graphene is a 2D allotrope of carbon with exciting properties such as extremely high electronic cond...
Graphene is widely recognized for its unique structural, physical and electronic properties that can...
For the first time a critical analysis of the influence that four different graphene oxide reduction...
A main advantage of graphene oxide (GO) over other materials is the high tunability of its surface f...
For the first time a critical analysis of the influence that four different graphene oxide reduction...
A main advantage of graphene oxide (GO) over other materials is the high tunability of its surface f...
Graphene has been touted as the next "wonder material" for various applications, owing to its excell...
For the first time a critical analysis of the influence that four different graphene oxide reduction...
We compared the differential pulse voltammetric performance of various chemically modified graphenes...
A simple and efficient method to enhance the quaternary nitrogen doping (N-doping) of graphene has b...
Graphene, chemically modified graphenes (CMGs), and two-dimensional layered nanomaterials have attra...