The mechanical properties of ultrathin membranes have attracted considerable attention recently. Nanoindentation based on atomic force microscopy is commonly employed to study mechanical properties. We find that the data processing procedures in previous studies are nice approximations, but it is difficult for them to illustrate the mechanical properties precisely. Accordingly, we develop a revised numerical method to describe the force curve properly, by which the intrinsic mechanical properties of these membranes can be acquired. Combining the nanoindentation measurements with the revised numerical method, we demonstrate that loading–unloading cycles under large load can lead to a pronounced improvement in stiffness of graphene grown by c...
The high-quality two-dimensional (2D) crystals possess remarkable mechanical behaviour which offers ...
Chemical vapor deposition (CVD) is regarded as a promising fabrication method for the automated, lar...
Graphene is an exciting new atomically-thin two dimensional system with ap-plications ranging from n...
The mechanical properties of ultrathin membranes have attracted considerable attention recently. Nan...
The mechanical properties of nanomaterials can be strongly affected by their crystal structures and ...
© 2020 American Chemical Society. The mechanical properties of nanomaterials can be strongly affecte...
Recent advances in the understanding of graphene elasticity have shown that suspended graphene does ...
In this paper, we present first a fabrication process of suspended graphene stripes. This process is...
In this paper, we present first a fabrication process of suspended graphene stripes. This process is...
In this paper, we present first a fabrication process of suspended graphene stripes. This process is...
Due to its unique mechanical properties, graphene can be applied for reinforcement in nanocomposites...
Graphene is regarded as the toughest two-dimensional material (highest in-plane elastic properties)...
Graphene is an exciting new atomically-thin two dimensional system with applications ranging from ne...
The basic building block of many carbon nanostructures like fullerenes, carbon onions or nanotubes i...
Paneff F. Elastic properties of Carbon nanomembranes and graphene: theory and experiment. Bielefeld:...
The high-quality two-dimensional (2D) crystals possess remarkable mechanical behaviour which offers ...
Chemical vapor deposition (CVD) is regarded as a promising fabrication method for the automated, lar...
Graphene is an exciting new atomically-thin two dimensional system with ap-plications ranging from n...
The mechanical properties of ultrathin membranes have attracted considerable attention recently. Nan...
The mechanical properties of nanomaterials can be strongly affected by their crystal structures and ...
© 2020 American Chemical Society. The mechanical properties of nanomaterials can be strongly affecte...
Recent advances in the understanding of graphene elasticity have shown that suspended graphene does ...
In this paper, we present first a fabrication process of suspended graphene stripes. This process is...
In this paper, we present first a fabrication process of suspended graphene stripes. This process is...
In this paper, we present first a fabrication process of suspended graphene stripes. This process is...
Due to its unique mechanical properties, graphene can be applied for reinforcement in nanocomposites...
Graphene is regarded as the toughest two-dimensional material (highest in-plane elastic properties)...
Graphene is an exciting new atomically-thin two dimensional system with applications ranging from ne...
The basic building block of many carbon nanostructures like fullerenes, carbon onions or nanotubes i...
Paneff F. Elastic properties of Carbon nanomembranes and graphene: theory and experiment. Bielefeld:...
The high-quality two-dimensional (2D) crystals possess remarkable mechanical behaviour which offers ...
Chemical vapor deposition (CVD) is regarded as a promising fabrication method for the automated, lar...
Graphene is an exciting new atomically-thin two dimensional system with ap-plications ranging from n...