Graphene characterized with ultrahigh intrinsic strength and excellent electronic properties is an ideal material to reinforce metals without despairing their thermal and electrical properties. Here, the electronic and mechanical properties of graphene intercalated copper (graphene/Cu) composites are investigated using density functional theory calculations. Graphene/Cu systems present an excellent electrical conductivity and increasing Debye temperature from 335 K for pure Cu to over 535 K in regardless of stacking models. In addition to greatly enhanced Young's modulus (149%), shear modulus (156%) and bulk modulus (108%) compared to copper, the ultimate strength of graphene/Cu composites are enhanced by 174% and 162%, in x and y direction...
The impacts of graphene nanosheets content on microstructure, nano-mechanical and tribological prope...
Graphene-copper nanolayered composites have received research interest as promising packaging materi...
Interface optimization is the most important and eternal research issue in preparation of the metal ...
Graphene characterized with ultrahigh intrinsic strength and excellent electronic properties is an i...
Cu/graphene nanosheets composites were fabricated at 800°C by the hot-pressing method using Cu and g...
Graphene-embedded Cu matrix composites (GE-CMCs), as one of typical versatile functional composite m...
Ten different simulation models are used to investigate the effects of content and chirality of grap...
In this research, copper nanocomposites reinforced by graphene nanoplatelets (GNPs) were fabricated ...
In this study, Cu matrix composites reinforced with reduced graphene oxide-coated submicron spherica...
Metal matrix composites (MMCs) have attracted a great deal of research interest because they have be...
The recent discovery of graphene and its associated thermal, electrical, and mechanical properties h...
Owing to the unique merits benefited from the two-dimensional (2D) geometry, graphene has been often...
Copper matrix composites reinforced with graphene nanoplatelets (GNPs) were prepared via molecularle...
Tensile behaviours of graphene reinforced copper nanocomposite are investigated by using molecular d...
Graphene, with its excellent mechanical properties and electrical conductivity, has been considered ...
The impacts of graphene nanosheets content on microstructure, nano-mechanical and tribological prope...
Graphene-copper nanolayered composites have received research interest as promising packaging materi...
Interface optimization is the most important and eternal research issue in preparation of the metal ...
Graphene characterized with ultrahigh intrinsic strength and excellent electronic properties is an i...
Cu/graphene nanosheets composites were fabricated at 800°C by the hot-pressing method using Cu and g...
Graphene-embedded Cu matrix composites (GE-CMCs), as one of typical versatile functional composite m...
Ten different simulation models are used to investigate the effects of content and chirality of grap...
In this research, copper nanocomposites reinforced by graphene nanoplatelets (GNPs) were fabricated ...
In this study, Cu matrix composites reinforced with reduced graphene oxide-coated submicron spherica...
Metal matrix composites (MMCs) have attracted a great deal of research interest because they have be...
The recent discovery of graphene and its associated thermal, electrical, and mechanical properties h...
Owing to the unique merits benefited from the two-dimensional (2D) geometry, graphene has been often...
Copper matrix composites reinforced with graphene nanoplatelets (GNPs) were prepared via molecularle...
Tensile behaviours of graphene reinforced copper nanocomposite are investigated by using molecular d...
Graphene, with its excellent mechanical properties and electrical conductivity, has been considered ...
The impacts of graphene nanosheets content on microstructure, nano-mechanical and tribological prope...
Graphene-copper nanolayered composites have received research interest as promising packaging materi...
Interface optimization is the most important and eternal research issue in preparation of the metal ...