Monolayer graphene growth on liquid copper (Cu) has attracted attention due to advantages of a flat/smooth catalytic growth surface, high synthesis temperature (>1080 °C) as well as the possibility of forming graphene domains that are mobile on the liquid Cu with potential to minimize grain boundary defects and self-assemble into a continuous monolayer film. However, the quality of monolayer graphene grown on liquid copper and its suitability for size-selective ionic/molecular membrane separations has not been evaluated/studied. Here, we probe the quality of monolayer graphene grown on liquid Cu (via a metallurgical process, HSMG ^® ) using Scanning Electron Microscope (SEM), High-resolution transmission electron microscope (HR-TEM), Raman ...
In this work, we report the transfer of graphene onto eight commercial microfiltration substrates ha...
The growth of graphene on copper foil has been performed, following the well-known low-pressure chem...
Nanoporous single-layer graphene (N-SLG) membranes, owing to their single-atom thinness, have the po...
We demonstrate a process for batch production of large-area (100-3000 μrn2) patterned freestanding g...
Graphene has recently emerged as a promising material for a wide range of potential applications, th...
The demand for large-area, high-quality synthesis of graphene with chemical vapor deposition (CVD) h...
Nowadays, membrane technology often relies on the use of porous substrates to selectively separate s...
Growth of high quality graphene is the basis for the successful demonstration and reduction to pract...
Gas separation membranes based on single-layer-graphene are highly attractive because the size of gr...
Monolayer nanoporous graphene represents an ideal membrane for molecular separations, but its practi...
Graphene is a thin atomic layer of carbon atoms which has a hexagonal lattice structure. Due to its ...
Defect free mono-layer graphene sheet growth has remained a challenge towards its huge potential app...
The synthesis of large, defect-free two-dimensional materials (2DMs) such as graphene is a major cha...
We report new findings on the chemical vapor deposition (CVD) of monolayer graphene with negligible ...
To achieve high-quality chemical vapor deposition of monolayer graphene electrodes (CVD-MG), appropr...
In this work, we report the transfer of graphene onto eight commercial microfiltration substrates ha...
The growth of graphene on copper foil has been performed, following the well-known low-pressure chem...
Nanoporous single-layer graphene (N-SLG) membranes, owing to their single-atom thinness, have the po...
We demonstrate a process for batch production of large-area (100-3000 μrn2) patterned freestanding g...
Graphene has recently emerged as a promising material for a wide range of potential applications, th...
The demand for large-area, high-quality synthesis of graphene with chemical vapor deposition (CVD) h...
Nowadays, membrane technology often relies on the use of porous substrates to selectively separate s...
Growth of high quality graphene is the basis for the successful demonstration and reduction to pract...
Gas separation membranes based on single-layer-graphene are highly attractive because the size of gr...
Monolayer nanoporous graphene represents an ideal membrane for molecular separations, but its practi...
Graphene is a thin atomic layer of carbon atoms which has a hexagonal lattice structure. Due to its ...
Defect free mono-layer graphene sheet growth has remained a challenge towards its huge potential app...
The synthesis of large, defect-free two-dimensional materials (2DMs) such as graphene is a major cha...
We report new findings on the chemical vapor deposition (CVD) of monolayer graphene with negligible ...
To achieve high-quality chemical vapor deposition of monolayer graphene electrodes (CVD-MG), appropr...
In this work, we report the transfer of graphene onto eight commercial microfiltration substrates ha...
The growth of graphene on copper foil has been performed, following the well-known low-pressure chem...
Nanoporous single-layer graphene (N-SLG) membranes, owing to their single-atom thinness, have the po...