PhDThis research provides a comprehensive investigation in understanding the effect of the addition of graphene nano-platelets (GNP) on the mechanical, tribological and biological properties of glass/ceramic composites. We investigated two kinds of materials namely amorphous matrices like glasses (silica, bioglass) and polycrystalline matrices like ceramics (alumina). The idea was to understand the effect of GNP on these matrices as GNP was expected to behave differently in these composites. Bioglass (BG) was also chosen as a matrix material to prepare BG-GNP composites. GNP can improve the electrical conductivity of BG which can be used further for bone tissue engineering applications. The effect of GNP on both electrical conductivity and ...
The addition of graphene-based nanostructures (GBNs) can improve the inherent fragility of ceramics ...
© 2020 by the authors.Graphene-based nanostructures, used as potential reinforcement in ceramic comp...
The aim of the present work is the development of amorphous thermoplastic matrix nanocomposites base...
The processing conditions for preparing well dispersed silica–graphene nanoplatelets and silica–grap...
This PhD project set out to tackle the disadvantages of brittleness and low corrosion resistance tha...
Graphene nano-platelets (GNP) were synthesised using a liquid phase exfoliation method and then used...
In graphene oxide (GO) reinforced composite materials, the uniform dispersion of GO and its interact...
The properties of graphene open new opportunities for the fabrication of composites exhibiting uniqu...
Graphene-based nanocomposites constitute an interesting and promising material for various applicati...
This paper presents a study on graphene platelet (GPL)-reinforced alumina (Al2O3) ceramic composites...
A novel strategy for producing ceramic – graphene nanocomposites with customizable mechanical and el...
Graphene has exceptional mechanical capabilities, making it a potential reinforcement material for p...
Graphene, is the building block of many carbon forms, including graphite, carbon nanotubes and Buck-...
The applications of a variety of bioactive ceramics such as hydroxyapatite (HA) in orthopedics are l...
This study investigated the feasibility of depositing graphene nanoplatelet (GNP)-reinforced yttria-...
The addition of graphene-based nanostructures (GBNs) can improve the inherent fragility of ceramics ...
© 2020 by the authors.Graphene-based nanostructures, used as potential reinforcement in ceramic comp...
The aim of the present work is the development of amorphous thermoplastic matrix nanocomposites base...
The processing conditions for preparing well dispersed silica–graphene nanoplatelets and silica–grap...
This PhD project set out to tackle the disadvantages of brittleness and low corrosion resistance tha...
Graphene nano-platelets (GNP) were synthesised using a liquid phase exfoliation method and then used...
In graphene oxide (GO) reinforced composite materials, the uniform dispersion of GO and its interact...
The properties of graphene open new opportunities for the fabrication of composites exhibiting uniqu...
Graphene-based nanocomposites constitute an interesting and promising material for various applicati...
This paper presents a study on graphene platelet (GPL)-reinforced alumina (Al2O3) ceramic composites...
A novel strategy for producing ceramic – graphene nanocomposites with customizable mechanical and el...
Graphene has exceptional mechanical capabilities, making it a potential reinforcement material for p...
Graphene, is the building block of many carbon forms, including graphite, carbon nanotubes and Buck-...
The applications of a variety of bioactive ceramics such as hydroxyapatite (HA) in orthopedics are l...
This study investigated the feasibility of depositing graphene nanoplatelet (GNP)-reinforced yttria-...
The addition of graphene-based nanostructures (GBNs) can improve the inherent fragility of ceramics ...
© 2020 by the authors.Graphene-based nanostructures, used as potential reinforcement in ceramic comp...
The aim of the present work is the development of amorphous thermoplastic matrix nanocomposites base...