Carbon nano additives (CNAs) are critical to achieving the unique properties of functionalized composites, however, controlling the dispersion of CNAs in material matrix is always a challenging task. In this study, a simple atomization approach was successfully developed to promote the dispersion efficiency of graphene nanoplatelets (GNPs) in cement composites. This atomization approach can be integrated with the direct, indirect and combined ultrasonic stirrings in a homemade automatic stirring-atomization device. Mechanical and microstructure tests were performed on hardened cement pastes blended with GNPs in different stirring and mixing approaches. Results show that the direct ultrasonic stirrings enabled more homogeneous dispersions of...
The object of this study is to investigate the feasibility of ball-milled graphene oxide nanoflakes ...
Research on cement-based materials is trying to exploit the synergies that nanomaterials can provide...
Cement is the most-used construction material worldwide. Research for sustainable cement production ...
In this work, graphene nanoplatelets (GNPs) were dispersed uniformly in aqueous solution using methy...
This research investigates an emerging material - graphene - that can be used to strengthen and incr...
Carbon-based nanomaterials are currently used to reinforce cement-based composite materials based on...
Nanoparticles can accelerate cement hydration due to their high activity compacting microstructure, ...
The emergence of nanomaterials research over the past decades, allows the construction sector to tur...
Recent research indicates the possibility of using nanomaterials (carbon nanotubes, graphene, titani...
Recent research indicates the possibility of using nanomaterials (carbon nanotubes, graphene, titani...
Physical and mechanical properties of graphitic nanomaterials, in particular multiwalled carbon nano...
This study examines and compares the workability, hydration, mechanical, microstructure and transpor...
Carbon-based nanofillers (NFs) have a marked effect on the mechanical and rheological properties of ...
The object of this study is to investigate the feasibility of ball-milled graphene oxide nanoflakes ...
In this study, a graphene oxide nanoribbons–functionalized carbon nanotubes–graphene oxide (GNFG) co...
The object of this study is to investigate the feasibility of ball-milled graphene oxide nanoflakes ...
Research on cement-based materials is trying to exploit the synergies that nanomaterials can provide...
Cement is the most-used construction material worldwide. Research for sustainable cement production ...
In this work, graphene nanoplatelets (GNPs) were dispersed uniformly in aqueous solution using methy...
This research investigates an emerging material - graphene - that can be used to strengthen and incr...
Carbon-based nanomaterials are currently used to reinforce cement-based composite materials based on...
Nanoparticles can accelerate cement hydration due to their high activity compacting microstructure, ...
The emergence of nanomaterials research over the past decades, allows the construction sector to tur...
Recent research indicates the possibility of using nanomaterials (carbon nanotubes, graphene, titani...
Recent research indicates the possibility of using nanomaterials (carbon nanotubes, graphene, titani...
Physical and mechanical properties of graphitic nanomaterials, in particular multiwalled carbon nano...
This study examines and compares the workability, hydration, mechanical, microstructure and transpor...
Carbon-based nanofillers (NFs) have a marked effect on the mechanical and rheological properties of ...
The object of this study is to investigate the feasibility of ball-milled graphene oxide nanoflakes ...
In this study, a graphene oxide nanoribbons–functionalized carbon nanotubes–graphene oxide (GNFG) co...
The object of this study is to investigate the feasibility of ball-milled graphene oxide nanoflakes ...
Research on cement-based materials is trying to exploit the synergies that nanomaterials can provide...
Cement is the most-used construction material worldwide. Research for sustainable cement production ...