An in situ heating holder inside an aberration-corrected transmission electron microscope (AC-TEM) is used to investigate the real-time atomic level dynamics associated with heterogeneous nucleation and growth of graphene from Au nanoparticle seeds. Heating monolayer graphene to an elevated temperature of 800 °C removes the majority of amorphous carbon adsorbates and leaves a clean surface. The aggregation of Au impurity atoms into nanoparticle clusters that are bound to the surface of monolayer graphene causes nucleation of secondary graphene layers from carbon feedstock present within the microscope chamber. This enables the in situ study of heterogeneous nucleation and growth of graphene at the atomic level. We show that the growth mecha...
Graphene grown on metal catalysts with low carbon solubility is a highly competitive alternative to ...
8siAn operando investigation of graphene growth on (100) grains of polycrystalline nickel (Ni) surfa...
The grain size of monolayer large area graphene is key to its performance. Microstructural design fo...
An in situ heating holder inside an aberration-corrected transmission electron microscope (AC-TEM) w...
An <i>in situ</i> heating holder inside an aberration-corrected transmission electron microscope (AC...
Graphene has grabbed enormous research attention due to its multiple unique properties. These proper...
During high temperature pyrolysis of polymer thin films, nanocrystalline graphene with a high defect...
International audienceBreakthroughs in cutting-edge research fields such as hetero-integration of ma...
To explore the mechanism of graphene chemical vapor deposition (CVD) growth on a catalyst surface, a...
Because of its high compatibility with conventional microfabrication processing technology, epitaxia...
The synthesis of wafer-scale single crystal graphene remains a challenge toward the utilization of i...
We report on in-situ graphene growth studies on nickel, copper and platinum catalysts inside a modif...
We show how gadolinium (Gd)-based metallofullerene (Gd3N@C80) molecules can be used to create single...
We shed light on the catalyst-free growth of graphene from amorphous carbon (a–C) by current induced...
Graphene grown on metal catalysts with low carbon solubility is a highly competitive alternative to ...
Graphene grown on metal catalysts with low carbon solubility is a highly competitive alternative to ...
8siAn operando investigation of graphene growth on (100) grains of polycrystalline nickel (Ni) surfa...
The grain size of monolayer large area graphene is key to its performance. Microstructural design fo...
An in situ heating holder inside an aberration-corrected transmission electron microscope (AC-TEM) w...
An <i>in situ</i> heating holder inside an aberration-corrected transmission electron microscope (AC...
Graphene has grabbed enormous research attention due to its multiple unique properties. These proper...
During high temperature pyrolysis of polymer thin films, nanocrystalline graphene with a high defect...
International audienceBreakthroughs in cutting-edge research fields such as hetero-integration of ma...
To explore the mechanism of graphene chemical vapor deposition (CVD) growth on a catalyst surface, a...
Because of its high compatibility with conventional microfabrication processing technology, epitaxia...
The synthesis of wafer-scale single crystal graphene remains a challenge toward the utilization of i...
We report on in-situ graphene growth studies on nickel, copper and platinum catalysts inside a modif...
We show how gadolinium (Gd)-based metallofullerene (Gd3N@C80) molecules can be used to create single...
We shed light on the catalyst-free growth of graphene from amorphous carbon (a–C) by current induced...
Graphene grown on metal catalysts with low carbon solubility is a highly competitive alternative to ...
Graphene grown on metal catalysts with low carbon solubility is a highly competitive alternative to ...
8siAn operando investigation of graphene growth on (100) grains of polycrystalline nickel (Ni) surfa...
The grain size of monolayer large area graphene is key to its performance. Microstructural design fo...