The 2-dimensional transformation of the diamond (111) surface to graphene has been demonstrated using ultrathin Fe films that catalytically reduce the reaction temperature needed for the conversion of sp3 to sp2 carbon. An epitaxial system is formed, which involves the re-crystallization of carbon at the Fe/vacuum interface and that enables the controlled growth of monolayer and multilayer graphene films. In order to study the initial stages of single and multilayer graphene growth, real time monitoring of the system was preformed within a photoemission and low energy electron microscope. It was found that the initial graphene growth occurred at temperatures as low as 500 C, whilst increasing the temperature to 560 C was required to produce...
Work presented here has been centered around the growth of epitaxial graphene via the thermal decomp...
The growth of a high-quality complete graphene layer is successfully achieved for Ir(111) and Ru(000...
The industrial realization of graphene has so far been limited by challenges related to the quality,...
The 2-dimensional transformation of the diamond (111) surface to graphene has been demonstrated usin...
The 2-dimensional transformation of the diamond (111) surface to graphene has been demonstrated usin...
The evolution of the diamond (111) surface as it undergoes reconstruction and subsequent graphene fo...
The evolution of the diamond (111) surface as it undergoes reconstruction and subsequent graphene fo...
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...
Applying time-dependent photoemission we unravel the graphene growth process on a metallic surface b...
The evolution of the diamond (111) surface as it undergoes reconstruction and subsequent graphene fo...
The evolution of the diamond (111) surface as it undergoes reconstruction and subsequent graphene 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,...
Work presented here has been centered around the growth of epitaxial graphene via the thermal decomp...
The growth of a high-quality complete graphene layer is successfully achieved for Ir(111) and Ru(000...
The industrial realization of graphene has so far been limited by challenges related to the quality,...
The 2-dimensional transformation of the diamond (111) surface to graphene has been demonstrated usin...
The 2-dimensional transformation of the diamond (111) surface to graphene has been demonstrated usin...
The evolution of the diamond (111) surface as it undergoes reconstruction and subsequent graphene fo...
The evolution of the diamond (111) surface as it undergoes reconstruction and subsequent graphene fo...
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...
Applying time-dependent photoemission we unravel the graphene growth process on a metallic surface b...
The evolution of the diamond (111) surface as it undergoes reconstruction and subsequent graphene fo...
The evolution of the diamond (111) surface as it undergoes reconstruction and subsequent graphene 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,...
Work presented here has been centered around the growth of epitaxial graphene via the thermal decomp...
The growth of a high-quality complete graphene layer is successfully achieved for Ir(111) and Ru(000...
The industrial realization of graphene has so far been limited by challenges related to the quality,...