Graphene has been increasingly used as nano sized fillers to create a broad range of nanocomposites with exceptional properties. The interfaces between fillers and matrix play a critical role in dictating the overall performance of a composite. However, the load transfer mechanism along graphene-polymer interface has not been well understood. In this study, we conducted molecular dynamics simulations to investigate the influence of surface functionalization and layer length on the interfacial load transfer in graphene polymer nanocomposites. The simulation results show that oxygen-functionalized graphene leads to larger interfacial shear force than hydrogen-functionalized and pristine ones during pull-out process. The increase of oxygen cov...
The performance of graphene/epoxy nanocomposites strongly depends on the interfacial interaction bet...
The van der Waals (vdW) force dominated interface between graphene and polymer matrix creates weak ...
Advanced nanoelectromechanical systems made from polymer dielectrics deposited onto 2D-nanomaterials...
Graphene has been increasingly used as nano sized fillers to create a broad range of nanocomposites ...
Graphene has been increasingly used as nano sized fillers to create a broad range of nanocomposites ...
In this work, a characterization study of the interfacial interaction between different types of gra...
In this work, a characterization study of the interfacial interaction between different types of gra...
Graphene–polymer nanocomposites have promising properties as new structural and functional materials...
In this work, a characterization study of the interfacial interaction between different types of gra...
Graphene-reinforced polymer nanocomposites possess excellent mechanical, thermal, and electrical pro...
Persistent research effort has been devoted for decades in developing materials for the aerospace in...
Understanding the interfacial behavior of graphene-polymer nanocomposite is a long-standing endeavor...
Understanding the interfacial behavior of graphene-polymer nanocomposite is a long-standing endeavor...
Aim of this article was to investigate the effect of grain boundaries on the interfacial properties ...
Understanding the interfacial behavior of graphene-polymer nanocomposite is a long-standing endeavor...
The performance of graphene/epoxy nanocomposites strongly depends on the interfacial interaction bet...
The van der Waals (vdW) force dominated interface between graphene and polymer matrix creates weak ...
Advanced nanoelectromechanical systems made from polymer dielectrics deposited onto 2D-nanomaterials...
Graphene has been increasingly used as nano sized fillers to create a broad range of nanocomposites ...
Graphene has been increasingly used as nano sized fillers to create a broad range of nanocomposites ...
In this work, a characterization study of the interfacial interaction between different types of gra...
In this work, a characterization study of the interfacial interaction between different types of gra...
Graphene–polymer nanocomposites have promising properties as new structural and functional materials...
In this work, a characterization study of the interfacial interaction between different types of gra...
Graphene-reinforced polymer nanocomposites possess excellent mechanical, thermal, and electrical pro...
Persistent research effort has been devoted for decades in developing materials for the aerospace in...
Understanding the interfacial behavior of graphene-polymer nanocomposite is a long-standing endeavor...
Understanding the interfacial behavior of graphene-polymer nanocomposite is a long-standing endeavor...
Aim of this article was to investigate the effect of grain boundaries on the interfacial properties ...
Understanding the interfacial behavior of graphene-polymer nanocomposite is a long-standing endeavor...
The performance of graphene/epoxy nanocomposites strongly depends on the interfacial interaction bet...
The van der Waals (vdW) force dominated interface between graphene and polymer matrix creates weak ...
Advanced nanoelectromechanical systems made from polymer dielectrics deposited onto 2D-nanomaterials...