The industrial realization of graphene has so far been limited by challenges related to the quality, reproducibility, and high process temperatures required to manufacture graphene on suitable substrates. We demonstrate that epitaxial graphene can be grown on transition-metal-treated 6H-SiC(0001) surfaces, with an onset of graphitization starting around 450–500 °C. From the chemical reaction between SiC and thin films of Fe or Ru, sp3 carbon is liberated from the SiC crystal and converted to sp2 carbon at the surface. The quality of the graphene is demonstrated by using angle-resolved photoemission spectroscopy and low-energy electron diffraction. Furthermore, the orientation and placement of the graphene layers relative to the SiC substrat...
Graphene has been widely heralded over the last decade as one of the most promising nanomaterials fo...
Graphene has been widely heralded over the last decade as one of the most promising nanomaterials fo...
Graphene has been widely heralded over the last decade as one of the most promising nanomaterials fo...
The industrial realization of graphene has so far been limited by challenges related to the quality,...
The industrial realization of graphene has so far been limited by challenges related to the quality,...
The industrial realization of graphene has so far been limited by challenges related to the quality,...
Ordered graphene films have been fabricated on Fe-treated SiC and diamond surfaces using the catalyt...
Ordered graphene films have been fabricated on Fe-treated SiC and diamond surfaces using the catalyt...
Ordered graphene films have been fabricated on Fe-treated SiC and diamond surfaces using the catalyt...
Thanks to its superior electron and hole mobilities, graphene has been considered to be a promising ...
The mechanism of few-layer graphene growth on the technologically relevant cubic-SiC/Si(001) substra...
The mechanism of few-layer graphene growth on the technologically relevant cubic-SiC/Si(001) substra...
The formation of epitaxial graphene on SiC(0001) surfaces is studied using atomic force microscopy, ...
Graphene is, due to its extraordinary properties, a promising material for future electronic applica...
This review is devoted to one of the most promising two-dimensional (2D) materials, graphene. Graphe...
Graphene has been widely heralded over the last decade as one of the most promising nanomaterials fo...
Graphene has been widely heralded over the last decade as one of the most promising nanomaterials fo...
Graphene has been widely heralded over the last decade as one of the most promising nanomaterials fo...
The industrial realization of graphene has so far been limited by challenges related to the quality,...
The industrial realization of graphene has so far been limited by challenges related to the quality,...
The industrial realization of graphene has so far been limited by challenges related to the quality,...
Ordered graphene films have been fabricated on Fe-treated SiC and diamond surfaces using the catalyt...
Ordered graphene films have been fabricated on Fe-treated SiC and diamond surfaces using the catalyt...
Ordered graphene films have been fabricated on Fe-treated SiC and diamond surfaces using the catalyt...
Thanks to its superior electron and hole mobilities, graphene has been considered to be a promising ...
The mechanism of few-layer graphene growth on the technologically relevant cubic-SiC/Si(001) substra...
The mechanism of few-layer graphene growth on the technologically relevant cubic-SiC/Si(001) substra...
The formation of epitaxial graphene on SiC(0001) surfaces is studied using atomic force microscopy, ...
Graphene is, due to its extraordinary properties, a promising material for future electronic applica...
This review is devoted to one of the most promising two-dimensional (2D) materials, graphene. Graphe...
Graphene has been widely heralded over the last decade as one of the most promising nanomaterials fo...
Graphene has been widely heralded over the last decade as one of the most promising nanomaterials fo...
Graphene has been widely heralded over the last decade as one of the most promising nanomaterials fo...