Graphene has outstanding mechanical properties due to its unique structure, and is regarded as an ideal reinforcement of metal matrix composites. However, it is always in an agglomerate form due to its large specific surface area, and thus, it must be first dispersed prior to combining with a matrix, and ultrasonic treatment is considered to be the most effective way. In this work, the effects of parameters of tip ultrasonic treatment, such as ultrasonic time, ultrasonic power, solvent kind, and its temperature, on dispersion and structure of graphene nanoplatelets (GNPs) were studied. The results show that increasing ultrasonic time or ultrasonic power can enhance the dispersion and exfoliation effects of GNPs, but also increase fragmentat...
In this paper, we report how few layers graphene that can be produced in large quantity with low def...
This research investigated the dispersion behavior of graphene nanoplatelets (GNPs) in water with wa...
It is a challenge to fabricate high-quality graphene sheets due to the different effects of external...
The exceptional properties of graphene and its structural uniqueness can improve the performance of ...
Abstract Graphene nanoplatelets (GNPs) can be produced by exfoliating graphite in solvents via high-...
Liquid Phase Exfoliation (LPE) is an efficient method for graphene flake exfoliation and considered ...
It is important to examine the factors that determine the properties of graphene. Various factors af...
Nowadays, one of the promising methods for scalable graphene production is ultrasound-aided liquid p...
AbstractSingle-, bi-, and multilayer graphenes were successfully prepared by sonicating bulk graphit...
An ultrasonic coupling agent, as an acoustic medium between the ultrasonic probe and the surface of ...
Graphene (G) is a newcomer material that holds promising properties for many applications. The produ...
Graphene, a monolayer form of carbon with two dimensional honeycomb lattices (sp2 Hybridization) has...
Graphene-based materials are highly interesting in virtue of their excellent chemical, physical and ...
In this study, the effect of reinforcement of graphene nanoplatelets (GNPs that consist of a few gra...
Graphene was produced from graphite powder using the three best known water-based conversion approac...
In this paper, we report how few layers graphene that can be produced in large quantity with low def...
This research investigated the dispersion behavior of graphene nanoplatelets (GNPs) in water with wa...
It is a challenge to fabricate high-quality graphene sheets due to the different effects of external...
The exceptional properties of graphene and its structural uniqueness can improve the performance of ...
Abstract Graphene nanoplatelets (GNPs) can be produced by exfoliating graphite in solvents via high-...
Liquid Phase Exfoliation (LPE) is an efficient method for graphene flake exfoliation and considered ...
It is important to examine the factors that determine the properties of graphene. Various factors af...
Nowadays, one of the promising methods for scalable graphene production is ultrasound-aided liquid p...
AbstractSingle-, bi-, and multilayer graphenes were successfully prepared by sonicating bulk graphit...
An ultrasonic coupling agent, as an acoustic medium between the ultrasonic probe and the surface of ...
Graphene (G) is a newcomer material that holds promising properties for many applications. The produ...
Graphene, a monolayer form of carbon with two dimensional honeycomb lattices (sp2 Hybridization) has...
Graphene-based materials are highly interesting in virtue of their excellent chemical, physical and ...
In this study, the effect of reinforcement of graphene nanoplatelets (GNPs that consist of a few gra...
Graphene was produced from graphite powder using the three best known water-based conversion approac...
In this paper, we report how few layers graphene that can be produced in large quantity with low def...
This research investigated the dispersion behavior of graphene nanoplatelets (GNPs) in water with wa...
It is a challenge to fabricate high-quality graphene sheets due to the different effects of external...