Nanoparticles can accelerate cement hydration due to their high activity compacting microstructure, and consequently increase the strength. For the industrial production of concrete modified with nanoscale particles, it is necessary to develop an environmentally friendly and cheap technology for the industrial production of nanoparticles. The article presents the results of increasing the operational characteristics of concrete by adding graphene nanostructures obtained by liquid-phase shear exfoliation of graphite. This environmentally friendly technology requires energy costs, at least ten times less than technologies that use ultrasonic treatment of the suspension. Our industrial partner set a specific task: to find the minimum concentra...
Carbon nano additives (CNAs) are critical to achieving the unique properties of functionalized compo...
Graphene nanoplatelet has been found to be able to improve the mechanical and electrical properties ...
This research investigates an emerging material - graphene - that can be used to strengthen and incr...
Nanoparticles can accelerate cement hydration due to their high activity compacting microstructure, ...
Recent research indicates the possibility of using nanomaterials (carbon nanotubes, graphene, titani...
Recent research indicates the possibility of using nanomaterials (carbon nanotubes, graphene, titani...
Progress in the field of nanomaterials presents an invaluable opportunity to develop cementitious co...
Carbon-based nanomaterials are currently used to reinforce cement-based composite materials based on...
Cement is the most-used construction material worldwide. Research for sustainable cement production ...
This thesis was submitted for the award of Doctor of Philosophy and was awarded by Brunel University...
In this work, graphene nanoplatelets (GNPs) were dispersed uniformly in aqueous solution using methy...
In recent years, with the higher requirements for the performance of cement-based materials and the ...
Concrete made from ordinary Portland cement is one of the most widely used construction materials du...
For applications in cement and concrete, studies on carbon-based nanomaterials have been almost excl...
The authors have made an overview of the status of production of cement concrete using nanotechnolog...
Carbon nano additives (CNAs) are critical to achieving the unique properties of functionalized compo...
Graphene nanoplatelet has been found to be able to improve the mechanical and electrical properties ...
This research investigates an emerging material - graphene - that can be used to strengthen and incr...
Nanoparticles can accelerate cement hydration due to their high activity compacting microstructure, ...
Recent research indicates the possibility of using nanomaterials (carbon nanotubes, graphene, titani...
Recent research indicates the possibility of using nanomaterials (carbon nanotubes, graphene, titani...
Progress in the field of nanomaterials presents an invaluable opportunity to develop cementitious co...
Carbon-based nanomaterials are currently used to reinforce cement-based composite materials based on...
Cement is the most-used construction material worldwide. Research for sustainable cement production ...
This thesis was submitted for the award of Doctor of Philosophy and was awarded by Brunel University...
In this work, graphene nanoplatelets (GNPs) were dispersed uniformly in aqueous solution using methy...
In recent years, with the higher requirements for the performance of cement-based materials and the ...
Concrete made from ordinary Portland cement is one of the most widely used construction materials du...
For applications in cement and concrete, studies on carbon-based nanomaterials have been almost excl...
The authors have made an overview of the status of production of cement concrete using nanotechnolog...
Carbon nano additives (CNAs) are critical to achieving the unique properties of functionalized compo...
Graphene nanoplatelet has been found to be able to improve the mechanical and electrical properties ...
This research investigates an emerging material - graphene - that can be used to strengthen and incr...