We investigate the structural and electrical properties of carbon-ion-implanted ultrananocrystalline diamond (UNCD) films. Impedance spectroscopy measurements show that the impedance of diamond grains is relatively stable, while that of grain boundaries (GBs) (R b) significantly increases after the C+ implantation, and decreases with the increase in the annealing temperature (T a) from 650 °C to 1000 °C. This implies that the C+ implantation has a more significant impact on the conductivity of GBs. Conductive atomic force microscopy demonstrates that the number of conductive sites increases in GB regions at T a above 900 °C, owing to the formation of a nanographitic phase confirmed by high-resolution transmission electronic microscopy. Visi...
Electrical structures based on thin films of nanocrystalline diamond are described as well as their ...
[[abstract]]The effects of Cu and Au ion implantation on the structural and electron field emission ...
The effects of Cu and Au ion implantation on the structural and electron field emission (EFE) proper...
We investigate the structural and electrical properties of carbon-ion-implanted ultrananocrystalline...
Carbon or phosphorus ions with doses 1012 cm-2 and 1014 cm-2 were implanted into ultrananocrystallin...
The impedance spectroscopy measurements were used to investigate the separated contributions of diam...
Ultrananocrystalline diamond is a unique form of carbon with grain sizes in the 3–5 nm region. This ...
CVD diamond shows interesting perspectives for the production of high-performance radiation detector...
[[abstract]]The microstructural evolution of UNCD films which are P-ion implanted and annealed at 60...
[[abstract]]Microstructural evolution as a function of substrate temperature (TS) for conducting ult...
Research and development have been performed to investigate the effect of total pressure and microwa...
Research in the area of CVD diamond thin films has increased significantly during the last decades. ...
Nanocrystalline diamond (NCD) has been grown using a nanodiamond seeding technique, leading to a den...
[[abstract]]Needle-like diamond grains encased in nano-graphitic layers are an ideal granular struct...
Ultrananocrystalline diamond (UNCD) is a 3–5 nm grain size material with many of the properties of d...
Electrical structures based on thin films of nanocrystalline diamond are described as well as their ...
[[abstract]]The effects of Cu and Au ion implantation on the structural and electron field emission ...
The effects of Cu and Au ion implantation on the structural and electron field emission (EFE) proper...
We investigate the structural and electrical properties of carbon-ion-implanted ultrananocrystalline...
Carbon or phosphorus ions with doses 1012 cm-2 and 1014 cm-2 were implanted into ultrananocrystallin...
The impedance spectroscopy measurements were used to investigate the separated contributions of diam...
Ultrananocrystalline diamond is a unique form of carbon with grain sizes in the 3–5 nm region. This ...
CVD diamond shows interesting perspectives for the production of high-performance radiation detector...
[[abstract]]The microstructural evolution of UNCD films which are P-ion implanted and annealed at 60...
[[abstract]]Microstructural evolution as a function of substrate temperature (TS) for conducting ult...
Research and development have been performed to investigate the effect of total pressure and microwa...
Research in the area of CVD diamond thin films has increased significantly during the last decades. ...
Nanocrystalline diamond (NCD) has been grown using a nanodiamond seeding technique, leading to a den...
[[abstract]]Needle-like diamond grains encased in nano-graphitic layers are an ideal granular struct...
Ultrananocrystalline diamond (UNCD) is a 3–5 nm grain size material with many of the properties of d...
Electrical structures based on thin films of nanocrystalline diamond are described as well as their ...
[[abstract]]The effects of Cu and Au ion implantation on the structural and electron field emission ...
The effects of Cu and Au ion implantation on the structural and electron field emission (EFE) proper...