Defect-free graphene nanosheets are the strongest material known but manufactured graphene tends to contain flaws of different forms and dimensions, leading to the degradation of mechanical performance. Here we report a quantitative mechanical approach to quantitatively evaluate the influence of defects within exfoliated pristine graphene sheets. Results indicate stress concentrations around defects within graphene sheets that lower strength
Doping in pristine 2D materials brings about the advantage of modulating wide range of mechanical pr...
Main goal of research is to measure mechanical properties of graphene grown under different conditio...
The super-high strength of single-layer graphene has attracted great interest. In practice, defects ...
Defect-free graphene nanosheets are the strongest material known but manufactured graphene tends to ...
PhDGraphene is the first 2D material consisting of carbon atoms densely packed into planar structure...
AbstractGraphene is the strongest material but its performance is significantly weakened by vacancy ...
A 2D bond-breaking model is presented that allows the extraction of the intrinsic line or edge energ...
Low-dimensional materials such as graphene exhibit superior electrical, mechanical and thermal prope...
We present molecular dynamics simulations of monolayer graphene under uniaxial tensile loading. The ...
The extraordinary strength, stiffness and lightness of graphene have generated great expectations of...
Due to its unique mechanical properties, graphene can be applied for reinforcement in nanocomposites...
The tensile properties of graphene with the Stone-Wales (S-W) defect are investigated by first princ...
Experimental studies show that Stone-Thrower-Wales STW defects generally exist in graphene sheets...
The effect of lattice orientation and crack length on the mechanical properties of Graphene are stud...
Graphene is such an important material for a variety of reasons, it’s the only man-made 2D object, I...
Doping in pristine 2D materials brings about the advantage of modulating wide range of mechanical pr...
Main goal of research is to measure mechanical properties of graphene grown under different conditio...
The super-high strength of single-layer graphene has attracted great interest. In practice, defects ...
Defect-free graphene nanosheets are the strongest material known but manufactured graphene tends to ...
PhDGraphene is the first 2D material consisting of carbon atoms densely packed into planar structure...
AbstractGraphene is the strongest material but its performance is significantly weakened by vacancy ...
A 2D bond-breaking model is presented that allows the extraction of the intrinsic line or edge energ...
Low-dimensional materials such as graphene exhibit superior electrical, mechanical and thermal prope...
We present molecular dynamics simulations of monolayer graphene under uniaxial tensile loading. The ...
The extraordinary strength, stiffness and lightness of graphene have generated great expectations of...
Due to its unique mechanical properties, graphene can be applied for reinforcement in nanocomposites...
The tensile properties of graphene with the Stone-Wales (S-W) defect are investigated by first princ...
Experimental studies show that Stone-Thrower-Wales STW defects generally exist in graphene sheets...
The effect of lattice orientation and crack length on the mechanical properties of Graphene are stud...
Graphene is such an important material for a variety of reasons, it’s the only man-made 2D object, I...
Doping in pristine 2D materials brings about the advantage of modulating wide range of mechanical pr...
Main goal of research is to measure mechanical properties of graphene grown under different conditio...
The super-high strength of single-layer graphene has attracted great interest. In practice, defects ...