Transmission Electron Microscope (TEM) techniques are applied to study the microstructure of diamond films grown from fullerene precursors. Electron diffraction and electron energy loss spectra (EELS) collected from the diamond films correspond to that of bulk diamond. Microdiffraction, high resolution images and EELS help determine that the first diamond grains that nucleate from fullerene precursors generally form on a thin amorphous carbon interlayer and seldom directly on the silicon substrate. Grain size measurements reveal nanocrystalline diamond grains. Cross section TEM images show that the nanocrystalline diamond grains are equiaxed and not columnar nor dendritic. The microstructure of small equiaxed grains throughout the film thic...
[[abstract]]High purity diamond films were successfully grown on various substrate materials, includ...
Nanocrystalline diamond films were grown by microwave plasma assisted chemical vapor deposition usin...
Ultra-dispersed nanodiamond particles (UDD) particles buried under a sol-gel TiO2 layer spin-coated ...
High-resolution transmission electron microscopy (HRTEM) has been used to investigate the microstruc...
A transmission electron microscopy (TEM) study of superconducting nanocrystalline diamond (NCD) cont...
Film growth from C{sub 60}/Ar mixtures results in very pure diamond. Diamond films grown using C{sub...
This thesis is concerned with microstructural and chemical investigations of thin layers of diamond ...
A polycrystalline diamond film grown by hot filament CVD was ion-milled and thinned to the diamond/s...
A polycrystalline diamond film grown by hot filament CVD was ion-milled and thinned to the diamond/s...
Fullerene precursors have been shown to result in the growth of diamond films from argon microwave p...
The quality of thin epitaxial diamond films on silicon and fullerene films on mica is limited by lat...
A cross-sectional high-resolution transmission electron microscopy (HRTEM) study of a film deposited...
©1994 Materials Research Society. The original publication is available at: http://www.mrs.org/DOI: ...
Atomic images of ultrathin diamond and diamond-like films grown on tungsten tips have been directly ...
In this work we compare growth of graphene on diamond thin films that enable large area processing. ...
[[abstract]]High purity diamond films were successfully grown on various substrate materials, includ...
Nanocrystalline diamond films were grown by microwave plasma assisted chemical vapor deposition usin...
Ultra-dispersed nanodiamond particles (UDD) particles buried under a sol-gel TiO2 layer spin-coated ...
High-resolution transmission electron microscopy (HRTEM) has been used to investigate the microstruc...
A transmission electron microscopy (TEM) study of superconducting nanocrystalline diamond (NCD) cont...
Film growth from C{sub 60}/Ar mixtures results in very pure diamond. Diamond films grown using C{sub...
This thesis is concerned with microstructural and chemical investigations of thin layers of diamond ...
A polycrystalline diamond film grown by hot filament CVD was ion-milled and thinned to the diamond/s...
A polycrystalline diamond film grown by hot filament CVD was ion-milled and thinned to the diamond/s...
Fullerene precursors have been shown to result in the growth of diamond films from argon microwave p...
The quality of thin epitaxial diamond films on silicon and fullerene films on mica is limited by lat...
A cross-sectional high-resolution transmission electron microscopy (HRTEM) study of a film deposited...
©1994 Materials Research Society. The original publication is available at: http://www.mrs.org/DOI: ...
Atomic images of ultrathin diamond and diamond-like films grown on tungsten tips have been directly ...
In this work we compare growth of graphene on diamond thin films that enable large area processing. ...
[[abstract]]High purity diamond films were successfully grown on various substrate materials, includ...
Nanocrystalline diamond films were grown by microwave plasma assisted chemical vapor deposition usin...
Ultra-dispersed nanodiamond particles (UDD) particles buried under a sol-gel TiO2 layer spin-coated ...