The composite comprised of graphene and carbon nanotubes (CNTs) exhibited significantly enhanced electro-chemical performance due both to the improved dispersion and inhibition of restacking of graphene and CNTs. In this work, graphene nanoribbons (GNRs)/CNTs composite (GNRs/CNTs) was synthesized on gram-scale by chemical vapor deposition. Under optimal growth conditions, the yield of GNRs/CNTs as high as 26 g per gram catalyst could be achieved in 30 min growth time. The morphology and quality of the as-synthesized composite was verified by using SEM, TEM and Raman spectroscopy. The electrochemical properties of GNRs/CNTs was evaluated using cyclic voltammetry (CV) and galvanostatic charge-discharge techniques. GNRs/CNTs exhibited specific...
Two-dimensional (2D) graphene and one-dimensional (1D) graphene nanoribbons (GNRs) are atomically th...
High-surface area activated graphene has a three-dimensional porous structure that makes it difficul...
Graphene is a highly studied material due to its unique electrical, optical, and mechanical properti...
AbstractCarbon nanotubes (CNTs) have a well-defined nanostructure to exhibit high electrical conduct...
In this work, we developed a facile route to synthesize three-dimensional graphene/carbon nanotube (...
Graphene has attracted considerable research interest in different fields of research due to its uni...
In this paper, we review the preparation methods of carbon nanotube (CNT)/graphene composite materia...
A simple solution-based oxidative process and subsequent chemical activation combination method has ...
Synergistic graphenes: The chemical and electrical synergies between graphene derivatives enable a s...
A novel capacitive deionization (CDI) electrical double layer (EDL) material from a composite of red...
This work is aimed at improving the electrosorption capacity of carbon nanotube/reticulated vitreous...
Binder-free composites of electrochemically reduced graphene oxide (ecrGO) and multiwalled carbon na...
In recent years, capacitive deionization (CDI) has been reported as one of the emerging technologies...
Increasing global energy demands and climate change concerns related to energy use require developin...
Graphene, a two-dimensional hexagonal honeycomb carbon structure, is widely used in membrane technol...
Two-dimensional (2D) graphene and one-dimensional (1D) graphene nanoribbons (GNRs) are atomically th...
High-surface area activated graphene has a three-dimensional porous structure that makes it difficul...
Graphene is a highly studied material due to its unique electrical, optical, and mechanical properti...
AbstractCarbon nanotubes (CNTs) have a well-defined nanostructure to exhibit high electrical conduct...
In this work, we developed a facile route to synthesize three-dimensional graphene/carbon nanotube (...
Graphene has attracted considerable research interest in different fields of research due to its uni...
In this paper, we review the preparation methods of carbon nanotube (CNT)/graphene composite materia...
A simple solution-based oxidative process and subsequent chemical activation combination method has ...
Synergistic graphenes: The chemical and electrical synergies between graphene derivatives enable a s...
A novel capacitive deionization (CDI) electrical double layer (EDL) material from a composite of red...
This work is aimed at improving the electrosorption capacity of carbon nanotube/reticulated vitreous...
Binder-free composites of electrochemically reduced graphene oxide (ecrGO) and multiwalled carbon na...
In recent years, capacitive deionization (CDI) has been reported as one of the emerging technologies...
Increasing global energy demands and climate change concerns related to energy use require developin...
Graphene, a two-dimensional hexagonal honeycomb carbon structure, is widely used in membrane technol...
Two-dimensional (2D) graphene and one-dimensional (1D) graphene nanoribbons (GNRs) are atomically th...
High-surface area activated graphene has a three-dimensional porous structure that makes it difficul...
Graphene is a highly studied material due to its unique electrical, optical, and mechanical properti...