The synthesis of graphene and graphene quantum dots (GQDs) employing various approaches with a range of precursors, chemicals, and parameters has been reported. Most of the top-down and bottom-up techniques employ strong and hazardous chemical environments, complicated and tedious procedures, are time-consuming, and often require special equipment. Another drawback of the techniques reported is the production of agglomerated, inhomogeneous, and non-dispersible graphene in aqueous solvents or organic solvents, thus limiting its application. This work specifically and comprehensively describes the electrochemical exfoliation of graphene and GQDs, which is often considered as a simple one-step, facile, non-hazardous, and highly efficient techn...
The poster discusses the principles of producing graphene through electrochemical exfoliation route....
Due to its unprecedented physical properties, graphene has generated huge interest over the last 7 y...
Graphene, the thinnest two-dimensional material possible, is considered as a realistic candidate for...
This study reports on the production of graphene quantum dots (GQDs) suspension using a simple elect...
This study reports on the electrochemical exfoliation of graphene nanoflakes and graphene quantum do...
A facile and non-hazardous route for synthesis of triangle-shaped graphene nanoflakes and graphene q...
We reported the preparation of colloidal graphene in quantity via the anodic exfoliation of graphite...
Among the different synthesizing method of graphene, besides having a most suitable and cost-effecti...
We report on a novel, simple and easy method to produce graphene layers using chemically synthesized...
This study reports on the production of graphene quantum dots (GQDs) suspension using a simple elect...
Abstract Synthesis of structurally controlled graphene materials is critical for realizing their pra...
Current methods for preparing graphene quantum dots (GQDs) rely on oxidation and reducing agents or ...
This paper presents a facile method of producing graphene nanosheets by organic liquid-assisted elec...
Despite the intensive research efforts devoted to graphene fabrication over the past decade, the pro...
Electrochemical exfoliation of graphite has emerged as an efficient, scalable, and low-cost approach...
The poster discusses the principles of producing graphene through electrochemical exfoliation route....
Due to its unprecedented physical properties, graphene has generated huge interest over the last 7 y...
Graphene, the thinnest two-dimensional material possible, is considered as a realistic candidate for...
This study reports on the production of graphene quantum dots (GQDs) suspension using a simple elect...
This study reports on the electrochemical exfoliation of graphene nanoflakes and graphene quantum do...
A facile and non-hazardous route for synthesis of triangle-shaped graphene nanoflakes and graphene q...
We reported the preparation of colloidal graphene in quantity via the anodic exfoliation of graphite...
Among the different synthesizing method of graphene, besides having a most suitable and cost-effecti...
We report on a novel, simple and easy method to produce graphene layers using chemically synthesized...
This study reports on the production of graphene quantum dots (GQDs) suspension using a simple elect...
Abstract Synthesis of structurally controlled graphene materials is critical for realizing their pra...
Current methods for preparing graphene quantum dots (GQDs) rely on oxidation and reducing agents or ...
This paper presents a facile method of producing graphene nanosheets by organic liquid-assisted elec...
Despite the intensive research efforts devoted to graphene fabrication over the past decade, the pro...
Electrochemical exfoliation of graphite has emerged as an efficient, scalable, and low-cost approach...
The poster discusses the principles of producing graphene through electrochemical exfoliation route....
Due to its unprecedented physical properties, graphene has generated huge interest over the last 7 y...
Graphene, the thinnest two-dimensional material possible, is considered as a realistic candidate for...