Impedance spectroscopy of lightly nitrogenated ultrananocrystalline diamond films is investigated in the range 10 mHz–10 MHz at different temperatures between 115 K and 300 K. The electrical response was modeled alternatively by a series and a parallel equivalent scheme considering also the contribution of a resistance in series with the material’s response. These schemes fairly agree with experimentally observed low-frequency data, but cannot completely explain trends observed at higher frequencies. Resonance effects were indeed evidenced due, probably, to the formation of a distributed junction at the interface between the p-type nanocrystalline diamond grain and the degenerate n-type connective tissue. The role of the series resistance i...
Diamond is a diverse material whose extreme properties make it ideal for many applications. In order...
Tetragonal sp3-bonded diamond has the highest known atomic density. The nature of the bond and its h...
Small amplitude AC characterization of diamond thin films of different thickness and grain size has ...
Impedance spectroscopy of lightly nitrogenated ultrananocrystalline diamond films is investigated in...
Research in the area of CVD diamond thin films has increased significantly during the last decades. ...
In this paper, we report the first measurement of impedance on freestanding diamond films from 0.1 H...
In this paper, we discuss the transport mechanism in nitrogen-doped ultrananocrystalline (N-UNCD) an...
Impedance measurements were performed in the frequency and temperature domain to infer the bulk and ...
Nanocrystalline diamond (NCD) has been grown using a nanodiamond seeding technique, leading to a den...
Measurement of alternating current conductance in the gigahertz regime of free standing nitrogen inc...
Dc current-voltage (I-V) measurement, Hall measurement, Deep-level transient-spectroscopy (DLTS), an...
We investigate the structural and electrical properties of carbon-ion-implanted ultrananocrystalline...
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 ...
International audienceWe studied the transport properties of highly boron-doped nanocrystalline diam...
Diamond is a diverse material whose extreme properties make it ideal for many applications. In order...
Tetragonal sp3-bonded diamond has the highest known atomic density. The nature of the bond and its h...
Small amplitude AC characterization of diamond thin films of different thickness and grain size has ...
Impedance spectroscopy of lightly nitrogenated ultrananocrystalline diamond films is investigated in...
Research in the area of CVD diamond thin films has increased significantly during the last decades. ...
In this paper, we report the first measurement of impedance on freestanding diamond films from 0.1 H...
In this paper, we discuss the transport mechanism in nitrogen-doped ultrananocrystalline (N-UNCD) an...
Impedance measurements were performed in the frequency and temperature domain to infer the bulk and ...
Nanocrystalline diamond (NCD) has been grown using a nanodiamond seeding technique, leading to a den...
Measurement of alternating current conductance in the gigahertz regime of free standing nitrogen inc...
Dc current-voltage (I-V) measurement, Hall measurement, Deep-level transient-spectroscopy (DLTS), an...
We investigate the structural and electrical properties of carbon-ion-implanted ultrananocrystalline...
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 ...
International audienceWe studied the transport properties of highly boron-doped nanocrystalline diam...
Diamond is a diverse material whose extreme properties make it ideal for many applications. In order...
Tetragonal sp3-bonded diamond has the highest known atomic density. The nature of the bond and its h...
Small amplitude AC characterization of diamond thin films of different thickness and grain size has ...