Chemically modified graphene (CMG) nanoplatelets have shown great promise in various applications due to their electrical properties and high surface area. Chemical doping is one of the most effective methods to tune the electronic properties of graphene materials. In this work, novel B-doped nanoplatelets (borane-reduced graphene oxide, B-rG-0) were produced on a large scale via the reduction of graphene oxide by a borane-tetrahydrofuran adduct under reflux, and their use for supercapacitor electrodes was studied. This is the first report on the production of B-doped graphene nanoplatelets from a solution process and on the use of B-doped graphene materials in supercapacitors. The B-rG-0 had a high specific surface area of 466 m(2)/g and s...
Herein we use Nitrogen-doped reduced Graphene Oxide (N-rGO) as the active material in supercapacitor...
A simple and effective method using 6-amino-4-hydroxy-2-naphthalenesulfonic acid (ANS) for the synth...
Manipulating structure of graphene and its aggregates has been found to be important for graphene ba...
The potential application of graphene nanoplatelets as electrode material in supercapacitors with hi...
Chemically modified graphenes (CMGs) show great promise for various applications owing to the feasib...
As worldwide energy consumption continues to increase, so too does the demand for improved energy st...
Boron-nitrogen co-doped graphene nanoarchitectures were synthesized by annealing a freeze-dried prec...
Nitrogen-doped reduced giaphene oxide (RGO) samples with different nitrogen content, prepared by two...
In recent years, graphene-based materials have been in the forefront as electrode material for elect...
Graphene, a 2D carbon-based material with exceptional characteristics, has proven its potential in v...
Present state-of-the-art graphene-based electrodes for supercapacitors remain far from commercial re...
Graphene is an emerging carbon material that may soon find practical applications. With its unusual ...
In the present paper, graphene has been addressed as active material for supercapacitor electrodes. ...
The research on the carbon nanomaterials has begun since the world war one. Various types of carbon ...
Pyridinic-rich nitrogen-doped graphene nanoplatelets (PRGOs) were synthesized using an acid-catalyze...
Herein we use Nitrogen-doped reduced Graphene Oxide (N-rGO) as the active material in supercapacitor...
A simple and effective method using 6-amino-4-hydroxy-2-naphthalenesulfonic acid (ANS) for the synth...
Manipulating structure of graphene and its aggregates has been found to be important for graphene ba...
The potential application of graphene nanoplatelets as electrode material in supercapacitors with hi...
Chemically modified graphenes (CMGs) show great promise for various applications owing to the feasib...
As worldwide energy consumption continues to increase, so too does the demand for improved energy st...
Boron-nitrogen co-doped graphene nanoarchitectures were synthesized by annealing a freeze-dried prec...
Nitrogen-doped reduced giaphene oxide (RGO) samples with different nitrogen content, prepared by two...
In recent years, graphene-based materials have been in the forefront as electrode material for elect...
Graphene, a 2D carbon-based material with exceptional characteristics, has proven its potential in v...
Present state-of-the-art graphene-based electrodes for supercapacitors remain far from commercial re...
Graphene is an emerging carbon material that may soon find practical applications. With its unusual ...
In the present paper, graphene has been addressed as active material for supercapacitor electrodes. ...
The research on the carbon nanomaterials has begun since the world war one. Various types of carbon ...
Pyridinic-rich nitrogen-doped graphene nanoplatelets (PRGOs) were synthesized using an acid-catalyze...
Herein we use Nitrogen-doped reduced Graphene Oxide (N-rGO) as the active material in supercapacitor...
A simple and effective method using 6-amino-4-hydroxy-2-naphthalenesulfonic acid (ANS) for the synth...
Manipulating structure of graphene and its aggregates has been found to be important for graphene ba...