A hybrid chemical vapor deposition (CVD)‐powder flowing technique specifically developed in lab has been employed to produce high‐quality polycrystalline diamond layers containing Ti inclusions. Morphology, structural features, and surface composition of nanocomposite diamond‐based samples produced by different growth times have been analyzed by scanning electron microscopy, Raman and Auger spectroscopy, respectively. The CVD methodology adopted for the Ti incorporation in the diamond lattice does not perturb the crystalline quality of the diamond matrix, therefore maintaining the outstanding properties of the C‐sp3 phase. The functional properties of the nanocomposite layers have been tested by nanoindentation and I–V measurements. The ele...
High quality polycrystalline diamond films containing Ti dispersions have been produced by means of ...
High quality polycrystalline diamond films containing Ti dispersions have been produced by means of ...
The preparation of synthetic, highly conductive, diamond thin films has been achieved by different r...
A hybrid chemical vapor deposition (CVD)‐powder flowing technique specifically developed in lab has ...
A hybrid chemical vapor deposition (CVD)‐powder flowing technique specifically developed in lab has ...
A hybrid chemical vapor deposition (CVD)‐powder flowing technique specifically developed in lab has ...
A hybrid chemical vapor deposition (CVD)‐powder flowing technique specifically developed in lab has ...
A hybrid chemical vapor deposition (CVD)‐powder flowing technique specifically developed in lab has ...
A hybrid chemical vapor deposition (CVD)‐powder flowing technique specifically developed in lab has ...
Diamond film on titanium substrate has become extremely attractive because of the combined propertie...
This study is devoted to synthesizing and modifying conductive Ti-doped diamond (TiD) biosubstrates ...
CVD diamond possesses certain attractive electrochemical properties inter alia low background curren...
This study is devoted to synthesizing and modifying conductive Ti-doped diamond (TiD) biosubstrates ...
This study is devoted to synthesizing and modifying conductive Ti-doped diamond (TiD) biosubstrates ...
This study is devoted to synthesizing and modifying conductive Ti-doped diamond (TiD) biosubstrates ...
High quality polycrystalline diamond films containing Ti dispersions have been produced by means of ...
High quality polycrystalline diamond films containing Ti dispersions have been produced by means of ...
The preparation of synthetic, highly conductive, diamond thin films has been achieved by different r...
A hybrid chemical vapor deposition (CVD)‐powder flowing technique specifically developed in lab has ...
A hybrid chemical vapor deposition (CVD)‐powder flowing technique specifically developed in lab has ...
A hybrid chemical vapor deposition (CVD)‐powder flowing technique specifically developed in lab has ...
A hybrid chemical vapor deposition (CVD)‐powder flowing technique specifically developed in lab has ...
A hybrid chemical vapor deposition (CVD)‐powder flowing technique specifically developed in lab has ...
A hybrid chemical vapor deposition (CVD)‐powder flowing technique specifically developed in lab has ...
Diamond film on titanium substrate has become extremely attractive because of the combined propertie...
This study is devoted to synthesizing and modifying conductive Ti-doped diamond (TiD) biosubstrates ...
CVD diamond possesses certain attractive electrochemical properties inter alia low background curren...
This study is devoted to synthesizing and modifying conductive Ti-doped diamond (TiD) biosubstrates ...
This study is devoted to synthesizing and modifying conductive Ti-doped diamond (TiD) biosubstrates ...
This study is devoted to synthesizing and modifying conductive Ti-doped diamond (TiD) biosubstrates ...
High quality polycrystalline diamond films containing Ti dispersions have been produced by means of ...
High quality polycrystalline diamond films containing Ti dispersions have been produced by means of ...
The preparation of synthetic, highly conductive, diamond thin films has been achieved by different r...