Abstract: In this experimental study, the reinforcing effects of graphene oxide (GO) on portland cement paste are investigated. It is discovered that the introduction of 0.03% by weight GO sheets into the cement paste can increase the compressive strength and tensile strength of the cement composite by more than 40% due to the reduction of the pore structure of the cement paste. Moreover, the inclusion of the GO sheets enhances the degree of hydration of the cement paste. However, the workability of the GO-cement composite becomes somewhat reduced. The overall results indicate that GO could be a promising nanofillers for reinforcing the engineering properties of portland cement paste
The effect of graphene oxide (GO) nanosheets on the spatial distribution of cement paste pores has b...
As a major component of concrete, Portland cement has become the most consumed manmade substance. Th...
Graphene oxide (GO) is a graphite-based product. GO prepare a new distance to interact with cement m...
In this experimental study, the reinforcing effects of graphene oxide (GO) on portland cement paste ...
It has recently been found the graphene oxide (GO) aggregates form in cement paste due to the chemic...
Graphene oxide (GO) is the product of chemical exfoliation of graphite. Due to its good dispersibili...
© 2017 Elsevier Ltd It has recently been found the graphene oxide (GO) aggregates form in cement pas...
Graphene oxide (GO) is the product of chemical exfoliation of graphite. Due to its good dispersibili...
In this study, the effects of graphene oxide (GO) agglomerates on the workability, hydration, micros...
© 2017 Elsevier Ltd The effects of graphene oxide (GO) on the early-age hydration process and mechan...
© 2017 Elsevier Ltd In this study, the effects of graphene oxide (GO) agglomerates on the workabilit...
The current study presents research into the effect of graphene oxide (GO) with a carbon to oxygen r...
The current study presents research into the effect of graphene oxide (GO) with a carbon to oxygen r...
The effects of graphene oxide (GO) on the early-age hydration process and mechanical properties of P...
This paper presents the effect of graphene oxide (GO) on the properties and microstructures of the m...
The effect of graphene oxide (GO) nanosheets on the spatial distribution of cement paste pores has b...
As a major component of concrete, Portland cement has become the most consumed manmade substance. Th...
Graphene oxide (GO) is a graphite-based product. GO prepare a new distance to interact with cement m...
In this experimental study, the reinforcing effects of graphene oxide (GO) on portland cement paste ...
It has recently been found the graphene oxide (GO) aggregates form in cement paste due to the chemic...
Graphene oxide (GO) is the product of chemical exfoliation of graphite. Due to its good dispersibili...
© 2017 Elsevier Ltd It has recently been found the graphene oxide (GO) aggregates form in cement pas...
Graphene oxide (GO) is the product of chemical exfoliation of graphite. Due to its good dispersibili...
In this study, the effects of graphene oxide (GO) agglomerates on the workability, hydration, micros...
© 2017 Elsevier Ltd The effects of graphene oxide (GO) on the early-age hydration process and mechan...
© 2017 Elsevier Ltd In this study, the effects of graphene oxide (GO) agglomerates on the workabilit...
The current study presents research into the effect of graphene oxide (GO) with a carbon to oxygen r...
The current study presents research into the effect of graphene oxide (GO) with a carbon to oxygen r...
The effects of graphene oxide (GO) on the early-age hydration process and mechanical properties of P...
This paper presents the effect of graphene oxide (GO) on the properties and microstructures of the m...
The effect of graphene oxide (GO) nanosheets on the spatial distribution of cement paste pores has b...
As a major component of concrete, Portland cement has become the most consumed manmade substance. Th...
Graphene oxide (GO) is a graphite-based product. GO prepare a new distance to interact with cement m...