Rapid single-step fabrication of graphene patterns was developed using laser-induced chemical vapor deposition (LCVD). A laser beam irradiates a thin nickel foil in a CH4 and H2 environment to induce a local temperature rise, thereby allowing the direct writing of graphene patterns in precisely controlled positions at room temperature. Line patterns can be achieved with a single scan without pre- or postprocesses. Surprisingly, the growth rate is several thousand times faster than that of general CVD methods. The discovery and development of the LCVD growth process provide a route for the rapid fabrication of graphene patterns for various applications
This research introduces a readily available and non-chemical combinatorial production approach, kno...
We have investigated the fabrication of graphene by chemical vapor deposition using a conventional r...
Advanced micro/nanofabrication of functional materials and structures with various dimensions repres...
Rapid single-step fabrication of graphene patterns was developed using laser-induced chemical vapor ...
Direct fabrication of graphene patterns on SiO2/Si substrates was demonstrated using a single-step l...
Few layer graphene (FLG) has attracted tremendous interest in recent years because of its unique pro...
Graphene is a remarkable two-dimensional (2D) material that is of great interest to both academia an...
We developed a process to form transparent interconnections using graphenepatterns that were synthes...
Laser-induced graphene (LIG), which is directly fabricated by laser carbonization of polymers, has g...
Carbon-based materials (CBMs) such as graphene, carbon nanotubes (CNT), highly ordered pyrolytic gra...
Due to its unique mechanical and electrical properties, the 2D carbon, graphene, has gained tremendo...
In this paper, laser chemical vapour deposition (LCVD) is explored as a method for the deposition of...
Based on the second law of thermodynamics, energy has dispersive nature. When dispersive energy is c...
Printing of binder-free graphene electrodes directly on substrates has the potential to enable a lar...
We developed a process to form transparent interconnections using graphene patterns that were synthe...
This research introduces a readily available and non-chemical combinatorial production approach, kno...
We have investigated the fabrication of graphene by chemical vapor deposition using a conventional r...
Advanced micro/nanofabrication of functional materials and structures with various dimensions repres...
Rapid single-step fabrication of graphene patterns was developed using laser-induced chemical vapor ...
Direct fabrication of graphene patterns on SiO2/Si substrates was demonstrated using a single-step l...
Few layer graphene (FLG) has attracted tremendous interest in recent years because of its unique pro...
Graphene is a remarkable two-dimensional (2D) material that is of great interest to both academia an...
We developed a process to form transparent interconnections using graphenepatterns that were synthes...
Laser-induced graphene (LIG), which is directly fabricated by laser carbonization of polymers, has g...
Carbon-based materials (CBMs) such as graphene, carbon nanotubes (CNT), highly ordered pyrolytic gra...
Due to its unique mechanical and electrical properties, the 2D carbon, graphene, has gained tremendo...
In this paper, laser chemical vapour deposition (LCVD) is explored as a method for the deposition of...
Based on the second law of thermodynamics, energy has dispersive nature. When dispersive energy is c...
Printing of binder-free graphene electrodes directly on substrates has the potential to enable a lar...
We developed a process to form transparent interconnections using graphene patterns that were synthe...
This research introduces a readily available and non-chemical combinatorial production approach, kno...
We have investigated the fabrication of graphene by chemical vapor deposition using a conventional r...
Advanced micro/nanofabrication of functional materials and structures with various dimensions repres...