In recent years, graphene-based materials have been in the forefront as electrode material for electrochemical energy generation and storage. Despite this prevalent interest, synthesis procedures have not attained three important efficiency requirements, that is, cost, energy, and eco-friendliness. In this regard, in the present work, graphene nanoplatelets with selectively functionalized edges (XGnPs) are prepared through a simple, eco-friendly and efficient method, which involves ball milling of graphite in the presence of hydrogen (H-2), bromine (Br-2), and iodine (I-2). The resultant HGnP, BrGnP, and IGnP reveal significant exfoliation of graphite layers, as evidenced by high BET surface area of 414, 595, and 772 m(2) g(-1), respectivel...
Chemically modified graphene (CMG) nanoplatelets have shown great promise in various applications du...
Graphene, as a single layer of graphite, is currently the focal point of research into condensed mat...
Edge-functionalized graphene nanoplatelets (GnPs) were synthesized by a simple ball-milling process ...
We report the synthesis of edge-iodine/sulfonic acid-functionalized, graphene nanoplatelets (ISGnPs)...
Edge-selectively functionalized graphene nanoplatelets (EFGnPs) with different functional groups wer...
The potential application of graphene nanoplatelets as electrode material in supercapacitors with hi...
A scalable and low???cost production of graphene nanoplatelets (GnPs) is one of the most important c...
As worldwide energy consumption continues to increase, so too does the demand for improved energy st...
Edge-selectively functionalized graphene nanoplatelets (EFGnPs) with different functional groups wer...
Edge-carboxylated graphene nanoplatelets (ECG), prepared by a mechano-chemical reaction (or ball mil...
Edge-selectively halogenated graphene nanoplatelets (XGnPs, X=C1, Br, and I) were prepared by the me...
Edge-selectively halogenated graphene nanoplatelets (XGnPs, X = Cl, Br, or I) are prepared by a simp...
Edge-selectively halogenated graphene nanoplatelets (XGnPs, X = Cl, Br, or I) are prepared by a simp...
Graphene electrode offers an exceptional high energy storage capacity in various electrochemical sys...
A simple solution-based oxidative process and subsequent chemical activation combination method has ...
Chemically modified graphene (CMG) nanoplatelets have shown great promise in various applications du...
Graphene, as a single layer of graphite, is currently the focal point of research into condensed mat...
Edge-functionalized graphene nanoplatelets (GnPs) were synthesized by a simple ball-milling process ...
We report the synthesis of edge-iodine/sulfonic acid-functionalized, graphene nanoplatelets (ISGnPs)...
Edge-selectively functionalized graphene nanoplatelets (EFGnPs) with different functional groups wer...
The potential application of graphene nanoplatelets as electrode material in supercapacitors with hi...
A scalable and low???cost production of graphene nanoplatelets (GnPs) is one of the most important c...
As worldwide energy consumption continues to increase, so too does the demand for improved energy st...
Edge-selectively functionalized graphene nanoplatelets (EFGnPs) with different functional groups wer...
Edge-carboxylated graphene nanoplatelets (ECG), prepared by a mechano-chemical reaction (or ball mil...
Edge-selectively halogenated graphene nanoplatelets (XGnPs, X=C1, Br, and I) were prepared by the me...
Edge-selectively halogenated graphene nanoplatelets (XGnPs, X = Cl, Br, or I) are prepared by a simp...
Edge-selectively halogenated graphene nanoplatelets (XGnPs, X = Cl, Br, or I) are prepared by a simp...
Graphene electrode offers an exceptional high energy storage capacity in various electrochemical sys...
A simple solution-based oxidative process and subsequent chemical activation combination method has ...
Chemically modified graphene (CMG) nanoplatelets have shown great promise in various applications du...
Graphene, as a single layer of graphite, is currently the focal point of research into condensed mat...
Edge-functionalized graphene nanoplatelets (GnPs) were synthesized by a simple ball-milling process ...