We demonstrate a simple approach to grow graphene films on polycrystalline nickel (Ni) foils, in which polycrystalline carbon hybrid materials (CHMs) were used in sandwich structures (molybdenum-CHMs-Ni-molybdenum) as a carbon source for graphene, and pressure was then applied to the sandwich. The CHMs were transformed into single as well as few layer graphene by a segregation–precipitation process. The applied pressure not only increased the density of the graphene films but also reduced the vaporization of dissociated carbon molecules of the CHMs. We have explored the possibility to grow graphene films in low vacuum (5 × 10<sup>–1</sup> Pa) at relatively low temperatures (≤750 °C). The formation of the graphene films at 750 °C is simple a...
Amorphous carbon thin films are technologically important materials that range in use from the semic...
This thesis is composed of a review on the rapidly growing field of graphene research and an experim...
A new method for growth of large-area graphene, which can lead to a scalable low-cost high-throughpu...
In this work, large-area graphene-based carbon films were synthesized through a fast and low-tempera...
Carbon films were energetically deposited onto copper and nickel foil using a filtered cathodic vacu...
We report a versatile method based on low vacuum annealing of cellulose acetate on nickel (Ni) surfa...
During the past 40 years, the fields of micro-electronic, energy and communication devices have exp...
The growth of graphene on Ni thin films using several different methods is discussed. These methods ...
We have demonstrated a new method for the large-area graphene growth, which can lead to a scalable l...
The employment of Ni-Mo films has recently been shown to yield strictly homogeneous single-layer gra...
Few-layer graphene films with a controllable thickness were grown on a nickel surface by rapid therm...
We report a scalable method to obtain a new material where large graphene sheets form webs linking c...
[[abstract]]A method for the synthesis of millimeter-scaled graphene films on silicon carbide substr...
Graphene can be synthesized via metal catalysis using solid carbon source. In this paper, graphene w...
In this work we present a low-cost, scalable technique to fabricate few-layer graphene films via amb...
Amorphous carbon thin films are technologically important materials that range in use from the semic...
This thesis is composed of a review on the rapidly growing field of graphene research and an experim...
A new method for growth of large-area graphene, which can lead to a scalable low-cost high-throughpu...
In this work, large-area graphene-based carbon films were synthesized through a fast and low-tempera...
Carbon films were energetically deposited onto copper and nickel foil using a filtered cathodic vacu...
We report a versatile method based on low vacuum annealing of cellulose acetate on nickel (Ni) surfa...
During the past 40 years, the fields of micro-electronic, energy and communication devices have exp...
The growth of graphene on Ni thin films using several different methods is discussed. These methods ...
We have demonstrated a new method for the large-area graphene growth, which can lead to a scalable l...
The employment of Ni-Mo films has recently been shown to yield strictly homogeneous single-layer gra...
Few-layer graphene films with a controllable thickness were grown on a nickel surface by rapid therm...
We report a scalable method to obtain a new material where large graphene sheets form webs linking c...
[[abstract]]A method for the synthesis of millimeter-scaled graphene films on silicon carbide substr...
Graphene can be synthesized via metal catalysis using solid carbon source. In this paper, graphene w...
In this work we present a low-cost, scalable technique to fabricate few-layer graphene films via amb...
Amorphous carbon thin films are technologically important materials that range in use from the semic...
This thesis is composed of a review on the rapidly growing field of graphene research and an experim...
A new method for growth of large-area graphene, which can lead to a scalable low-cost high-throughpu...