Graphene oxide-based materials (GOBMs) have been widely explored as nano-reinforcements in cementitious composites due to their unique properties. Oxygen-containing functional groups in GOBMs are crucial for enhancing the microstructure of cementitious composites. A better comprehension of their surface chemistry and mechanisms is required to advance the potential applications in cementitious composites of functionalized GOBMs. However, the mechanism by which the oxygen-containing functional groups enhance the response of cementitious composites is still unclear, and controlling the surface chemistry of GOBMs is currently constrained. This review aims to investigate the reactions and mechanisms for functionalized GOBMs as additives incorpor...
Abstract: In this experimental study, the reinforcing effects of graphene oxide (GO) on portland cem...
Graphene oxide (GO) was chemically bonded on sand through amino functional groups to avoid the GO ag...
Graphene oxide (GO) has wide applications and development prospects in the functional composites owi...
Graphene materials have been extensively explored and successfully used to improve performances of c...
The agglomeration of graphene oxide (GO) in alkaline media fundamentally restricts its reinforcement...
Recent research indicates the possibility of using nanomaterials (carbon nanotubes, graphene, titani...
Recent research indicates the possibility of using nanomaterials (carbon nanotubes, graphene, titani...
2D nanomaterials such as graphene oxide (GO) nanosheets have demonstrated marked potential for reinf...
Graphene oxide contains a range of reactive oxygen functional groups enables it as a suitable candid...
In the pre-study the bonds between graphene and cement hydrates are analyzed and two types of functi...
Graphene oxide (GO) is the product of chemical exfoliation of graphite. Due to its good dispersibili...
This study examines and compares the performance of two specific forms of graphene nanomaterials in ...
The current study presents research into the effect of graphene oxide (GO) with a carbon to oxygen r...
Graphene oxide (GO) is the product of chemical exfoliation of graphite. Due to its good dispersibili...
There has been increasing interest in using nanosized fillers in cement-based construction materials...
Abstract: In this experimental study, the reinforcing effects of graphene oxide (GO) on portland cem...
Graphene oxide (GO) was chemically bonded on sand through amino functional groups to avoid the GO ag...
Graphene oxide (GO) has wide applications and development prospects in the functional composites owi...
Graphene materials have been extensively explored and successfully used to improve performances of c...
The agglomeration of graphene oxide (GO) in alkaline media fundamentally restricts its reinforcement...
Recent research indicates the possibility of using nanomaterials (carbon nanotubes, graphene, titani...
Recent research indicates the possibility of using nanomaterials (carbon nanotubes, graphene, titani...
2D nanomaterials such as graphene oxide (GO) nanosheets have demonstrated marked potential for reinf...
Graphene oxide contains a range of reactive oxygen functional groups enables it as a suitable candid...
In the pre-study the bonds between graphene and cement hydrates are analyzed and two types of functi...
Graphene oxide (GO) is the product of chemical exfoliation of graphite. Due to its good dispersibili...
This study examines and compares the performance of two specific forms of graphene nanomaterials in ...
The current study presents research into the effect of graphene oxide (GO) with a carbon to oxygen r...
Graphene oxide (GO) is the product of chemical exfoliation of graphite. Due to its good dispersibili...
There has been increasing interest in using nanosized fillers in cement-based construction materials...
Abstract: In this experimental study, the reinforcing effects of graphene oxide (GO) on portland cem...
Graphene oxide (GO) was chemically bonded on sand through amino functional groups to avoid the GO ag...
Graphene oxide (GO) has wide applications and development prospects in the functional composites owi...