[[abstract]]Ultrananocrystalline diamond (UNCD) film is deposited at a substrate temperature lower than 500 °C. This film possesses diamond crystal of nanometer size embedded in a graphitic (or non-diamond carbon) phase. The presence of non-diamond carbon in the grain boundaries of diamond crystal plays a crucial role to the film properties and its corresponding application such as electron field emission. The present work reports the growth of UNCD films at different methane concentrations to alter the film properties that could make it suitable for higher electron field emission. The surface morphology of an as-grown film was examined with a field emission scanning electron microscope. Nucleation density in the range of 1011–1012/cm2 is o...
In this paper the low temperature deposition of nanocrystalline and ultrananocrystalline diamond (UN...
[[abstract]]Microstructural evolution as a function of substrate temperature (TS) for conducting ult...
[[abstract]]Fabrication of free-standing/highly conducting ultrananocrystalline diamond (fc-UNCD) fi...
[[abstract]]A modified nucleation and growth process was adopted so as to improve the electron field...
Nanocrystalline diamond films were grown by microwave plasma assisted chemical vapor deposition usin...
[[abstract]]Microstructural evolution of bias-enhanced grown (BEG) ultrananocrystalline diamond (UNC...
ABSTRACT Diamond films with grain sizes in the range of 5-1000 nm and grain boundaries containing no...
The field emission behaviour of a series of nanocrystalline N-doped diamond films has been investiga...
The field emission behaviour of a series of nanocrystalline N-doped diamond films has been investiga...
Recent studies of field emission from diamond have focused on the feasibility of growing diamond fil...
The field emission behaviour of a series of nanocrystalline N-doped diamond films has been investiga...
[[abstract]]Microstructural evolution of ultrananocrystalline diamond (UNCD) films in the bias-enhan...
Very low threshold field emission from undoped microcrystalline diamond films grown by the hot filam...
Nanocrystalline diamond films have been prepared using a magnetically enhanced RF assisted plasma ch...
[[abstract]]Different forms of diamond have been shown to have qualities as field emission sources. ...
In this paper the low temperature deposition of nanocrystalline and ultrananocrystalline diamond (UN...
[[abstract]]Microstructural evolution as a function of substrate temperature (TS) for conducting ult...
[[abstract]]Fabrication of free-standing/highly conducting ultrananocrystalline diamond (fc-UNCD) fi...
[[abstract]]A modified nucleation and growth process was adopted so as to improve the electron field...
Nanocrystalline diamond films were grown by microwave plasma assisted chemical vapor deposition usin...
[[abstract]]Microstructural evolution of bias-enhanced grown (BEG) ultrananocrystalline diamond (UNC...
ABSTRACT Diamond films with grain sizes in the range of 5-1000 nm and grain boundaries containing no...
The field emission behaviour of a series of nanocrystalline N-doped diamond films has been investiga...
The field emission behaviour of a series of nanocrystalline N-doped diamond films has been investiga...
Recent studies of field emission from diamond have focused on the feasibility of growing diamond fil...
The field emission behaviour of a series of nanocrystalline N-doped diamond films has been investiga...
[[abstract]]Microstructural evolution of ultrananocrystalline diamond (UNCD) films in the bias-enhan...
Very low threshold field emission from undoped microcrystalline diamond films grown by the hot filam...
Nanocrystalline diamond films have been prepared using a magnetically enhanced RF assisted plasma ch...
[[abstract]]Different forms of diamond have been shown to have qualities as field emission sources. ...
In this paper the low temperature deposition of nanocrystalline and ultrananocrystalline diamond (UN...
[[abstract]]Microstructural evolution as a function of substrate temperature (TS) for conducting ult...
[[abstract]]Fabrication of free-standing/highly conducting ultrananocrystalline diamond (fc-UNCD) fi...