Boron-doped polycrystaline diamond films grown by hot-filament-assisted chemical vapor deposition were studied with ultraviolet photoemission spectroscopy (UPS), Raman spectroscopy, X-ray diffractometry and current voltage measurements. The UPS measurement shows that the work function (phi) without electric field is about 3.9 eV . The field-emission current-voltage measurements indicate a threshold voltage ranging from 8.97x106 to 9.64x106 V=m and a work function (phi) about 0.3 eV . These results show that boron doped diamond films exhibit a negative electron affinity in high electric field
Nanocrystalline diamond films have been prepared using a magnetically enhanced RF assisted plasma ch...
Boron-doped diamond (BDD) films were deposited on rhenium substrates using methane/hydrogen as react...
Strong negative electron affinity effects have been observed on the surface of as-grown chemical vap...
Boron-doped polycrystaline diamond films grown by hot-filament-assisted chemical vapor deposition we...
The field emission properties of thin, fine-grained diamond films were investigated by measuring emi...
Results are reported on characterization of the field electron emission from diamond films grown by ...
[[abstract]]Chemical vapor deposited (CVD) diamond films exhibiting stable and intrinsic negative el...
Field emission properties of hot filament chemical vapor deposited boron doped polycrystalline diamo...
Heavily boron-doped nanocrystalline (nc) diamond films were deposited using microwave plasma chemica...
Abstract: Results are reported on characterization of the field electron emission from diamond films...
Diamond films and islands grown by chemical vapor deposition were implanted with boron, sodium, and ...
[[abstract]]Electron field emission properties of diamond films synthesized by microwave CVD were ex...
[[abstract]]Nano-diamond films having grain size around 20 nm were deposited by bias enhanced growth...
Diamond is a promising semiconductor material for novel electronic applications because of its chemi...
In order to utilize negative electron affinities (NEA) on diamond surfaces, field emission from n-ty...
Nanocrystalline diamond films have been prepared using a magnetically enhanced RF assisted plasma ch...
Boron-doped diamond (BDD) films were deposited on rhenium substrates using methane/hydrogen as react...
Strong negative electron affinity effects have been observed on the surface of as-grown chemical vap...
Boron-doped polycrystaline diamond films grown by hot-filament-assisted chemical vapor deposition we...
The field emission properties of thin, fine-grained diamond films were investigated by measuring emi...
Results are reported on characterization of the field electron emission from diamond films grown by ...
[[abstract]]Chemical vapor deposited (CVD) diamond films exhibiting stable and intrinsic negative el...
Field emission properties of hot filament chemical vapor deposited boron doped polycrystalline diamo...
Heavily boron-doped nanocrystalline (nc) diamond films were deposited using microwave plasma chemica...
Abstract: Results are reported on characterization of the field electron emission from diamond films...
Diamond films and islands grown by chemical vapor deposition were implanted with boron, sodium, and ...
[[abstract]]Electron field emission properties of diamond films synthesized by microwave CVD were ex...
[[abstract]]Nano-diamond films having grain size around 20 nm were deposited by bias enhanced growth...
Diamond is a promising semiconductor material for novel electronic applications because of its chemi...
In order to utilize negative electron affinities (NEA) on diamond surfaces, field emission from n-ty...
Nanocrystalline diamond films have been prepared using a magnetically enhanced RF assisted plasma ch...
Boron-doped diamond (BDD) films were deposited on rhenium substrates using methane/hydrogen as react...
Strong negative electron affinity effects have been observed on the surface of as-grown chemical vap...