In the present work, we performed nanoindentation tests using molecular dynamics (MD) simulations on graphene, native silica aerogels, and single- and multi-layered graphene-reinforced silica aerogel nanocomposites. This work mainly focused on the two aspects of nanoindentation simulations: first, the resultant indentation force–depth curves, and second, the associated mechanical deformation behavior. We found that in the single-layer graphene-reinforced silica aerogel nanocomposite, the indentation resistance was four-fold that of native silica aerogels. Moreover, the combined system proved to be higher in stiffness compared to the individual material. Furthermore, the indentation resistance was increased significantly as we proceede...
This paper investigates the mechanical properties of graphene/PMMA nanocomposite system by using the...
Due to their excellent properties, graphene-like 2D structures have been widely used to reinforce al...
With a monolayer honeycomb-lattice of sp2-hybridized carbon atoms, graphene has demonstrated excepti...
The mechanical properties of graphene–cellulose (GC) nanocomposites are investigated using molecular...
Using molecular mechanics simulations, the elastic properties of multi-layer graphene (MLG) are inve...
Silica aerogels are nanostructured, highly porous solids which have, compared to other soft material...
Graphene, a single-atom sheet, has been considered as the most promising material for making future ...
In this study, indentation tests of graphene-based polymer nanocomposites were carried out to determ...
Graphene, an atomically-thin layer of hexagonally bonded carbon atoms, is the strongest material eve...
In this work, a characterization study of the interfacial interaction between different types of gra...
Inspired by the hierarchical structure and outstanding mechanical performance of biological nacre, w...
The current work focuses on the characterization of graphene based nanocomposites using molecular dy...
Using molecular dynamics simulation, we perform nanoindentation simulations on a Ni-graphene model s...
Persistent research effort has been devoted for decades in developing materials for the aerospace in...
Graphene and graphene nanoplatelets can be used as filler materials especially for polymer reinforce...
This paper investigates the mechanical properties of graphene/PMMA nanocomposite system by using the...
Due to their excellent properties, graphene-like 2D structures have been widely used to reinforce al...
With a monolayer honeycomb-lattice of sp2-hybridized carbon atoms, graphene has demonstrated excepti...
The mechanical properties of graphene–cellulose (GC) nanocomposites are investigated using molecular...
Using molecular mechanics simulations, the elastic properties of multi-layer graphene (MLG) are inve...
Silica aerogels are nanostructured, highly porous solids which have, compared to other soft material...
Graphene, a single-atom sheet, has been considered as the most promising material for making future ...
In this study, indentation tests of graphene-based polymer nanocomposites were carried out to determ...
Graphene, an atomically-thin layer of hexagonally bonded carbon atoms, is the strongest material eve...
In this work, a characterization study of the interfacial interaction between different types of gra...
Inspired by the hierarchical structure and outstanding mechanical performance of biological nacre, w...
The current work focuses on the characterization of graphene based nanocomposites using molecular dy...
Using molecular dynamics simulation, we perform nanoindentation simulations on a Ni-graphene model s...
Persistent research effort has been devoted for decades in developing materials for the aerospace in...
Graphene and graphene nanoplatelets can be used as filler materials especially for polymer reinforce...
This paper investigates the mechanical properties of graphene/PMMA nanocomposite system by using the...
Due to their excellent properties, graphene-like 2D structures have been widely used to reinforce al...
With a monolayer honeycomb-lattice of sp2-hybridized carbon atoms, graphene has demonstrated excepti...