Ordered graphene films have been fabricated on Fe-treated SiC and diamond surfaces using the catalytic conversion of sp3 to sp2 carbon. In comparison with the bare SiC (0 0 0 1) surface, the graphitization temperature is reduced from over 1000 °C to 600 °C and for diamond (1 1 1), this new approach enables epitaxial graphene to be grown on this surface for the first time. For both substrates, a key development is the in situ monitoring of the entire fabrication process using real-time electron spectroscopy that provides the necessary precision for the production of films of controlled thickness. The quality of the graphene/graphite layers has been verified using angle-resolved photoelectron spectroscopy, scanning tunneling microscopy and lo...
Etching with atomic hydrogen, as a preparation step before the high-temperature growth process of gr...
Etching with atomic hydrogen as a preparation step before the high-temperature growth process of gra...
Thanks to its superior electron and hole mobilities, graphene has been considered to be a promising ...
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...
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 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 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 2-dimensional transformation of the diamond (111) surface to graphene has been demonstrated usin...
A proposed graphene integrated semiconductor radiation sensor takes advantage of the electric field ...
Etching with atomic hydrogen, as a preparation step before the high-temperature growth process of gr...
Etching with atomic hydrogen, as a preparation step before the high-temperature growth process of gr...
Etching with atomic hydrogen, as a preparation step before the high-temperature growth process of gr...
Etching with atomic hydrogen as a preparation step before the high-temperature growth process of gra...
Thanks to its superior electron and hole mobilities, graphene has been considered to be a promising ...
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...
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 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 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 2-dimensional transformation of the diamond (111) surface to graphene has been demonstrated usin...
A proposed graphene integrated semiconductor radiation sensor takes advantage of the electric field ...
Etching with atomic hydrogen, as a preparation step before the high-temperature growth process of gr...
Etching with atomic hydrogen, as a preparation step before the high-temperature growth process of gr...
Etching with atomic hydrogen, as a preparation step before the high-temperature growth process of gr...
Etching with atomic hydrogen as a preparation step before the high-temperature growth process of gra...
Thanks to its superior electron and hole mobilities, graphene has been considered to be a promising ...