Recently, carbon nanomaterials have attracted significant attention due to their remarkable physical and chemical properties. The preparation methods and applications of the carbon nanomaterials have developed rapidly. In this study, the flame synthesis of amorphous carbon film grown on copper foil in an ethanol inverse diffusion flame was presented. The effects of ethanol flow rate, the copper foil location in flame and growth time were investigated in detail. The growth status of the synthetic amorphous carbon film was analyzed by an optical microscope and HRTEM (high resolution transmission electron microscope). Raman spectroscopy and XRD (X-ray diffraction) were used to characterize the structure of the carbon film. The roughness of the...
Carbon nanotubes (CNTs) were synthesized on nickel nitrate coated nickel foam in co-flow diffusion f...
This study reports on the synthesis of carbon nanofibers via chemical vapor deposition using Co and ...
In this study, a simple Physical Vapor Deposition (PVD) process we call Horizontal Vapor Phase Growt...
Recently, carbon nanomaterials have attracted significant attention due to their remarkable physical...
© 2020 American Chemical Society. A film formed of densely packed amorphous carbon nanofibers is syn...
Elemental carbon in the sp2 hybridization state can form a great variety of graphitic and amorphous ...
The dependence of the deposition process of amorphous carbon films on growth temperatures has been i...
Currently, Amorphous Carbon (a-C) attracts a lot of attention for different mechanical and electroni...
Two-dimensional carbon nanostructures have been produced via flame synthesis. Flame conditions and s...
By heating a pressed tablet of graphite powder mixed with nickel in a quartz tube mounted inside a h...
Structural features of carbon nanotubes make them highly promising for nanoelectronics, nanosensors,...
Abstract. Amorphous conducting carbon films deposited over quartz substrates were analysed using X-r...
Carbon Nanotubes (CNTs) have been widely recognized for its industrial applications such as energy s...
Synthesis temperature is one of important factors influencing on characteristics of carbon nanostruc...
Amorphous carbon films prepared by Chemical Vapor Deposition Method are widely used in oil industry ...
Carbon nanotubes (CNTs) were synthesized on nickel nitrate coated nickel foam in co-flow diffusion f...
This study reports on the synthesis of carbon nanofibers via chemical vapor deposition using Co and ...
In this study, a simple Physical Vapor Deposition (PVD) process we call Horizontal Vapor Phase Growt...
Recently, carbon nanomaterials have attracted significant attention due to their remarkable physical...
© 2020 American Chemical Society. A film formed of densely packed amorphous carbon nanofibers is syn...
Elemental carbon in the sp2 hybridization state can form a great variety of graphitic and amorphous ...
The dependence of the deposition process of amorphous carbon films on growth temperatures has been i...
Currently, Amorphous Carbon (a-C) attracts a lot of attention for different mechanical and electroni...
Two-dimensional carbon nanostructures have been produced via flame synthesis. Flame conditions and s...
By heating a pressed tablet of graphite powder mixed with nickel in a quartz tube mounted inside a h...
Structural features of carbon nanotubes make them highly promising for nanoelectronics, nanosensors,...
Abstract. Amorphous conducting carbon films deposited over quartz substrates were analysed using X-r...
Carbon Nanotubes (CNTs) have been widely recognized for its industrial applications such as energy s...
Synthesis temperature is one of important factors influencing on characteristics of carbon nanostruc...
Amorphous carbon films prepared by Chemical Vapor Deposition Method are widely used in oil industry ...
Carbon nanotubes (CNTs) were synthesized on nickel nitrate coated nickel foam in co-flow diffusion f...
This study reports on the synthesis of carbon nanofibers via chemical vapor deposition using Co and ...
In this study, a simple Physical Vapor Deposition (PVD) process we call Horizontal Vapor Phase Growt...