We have characterized mechanical properties of ultrananocrystalline diamond UNCD thin films grown using the hot filament chemical vapor deposition HFCVD technique at 680 °C, significantly lower than the conventional growth temperature of 800 °C. The films have 4.3% sp2 content in the near-surface region as revealed by near edge x-ray absorption fine structure spectroscopy. The films, 1 m thick, exhibit a net residual compressive stress of 3701 MPa averaged over the entire 150 mm wafer. UNCD microcantilever resonator structures and overhanging ledges were fabricated using lithography, dry etching, and wet release techniques. Overhanging ledges of the films released from the substrate exhibited periodic undulations due to stress relaxation. T...
We have measured mechanical stiffness and dissipation in ultrananocrystalline diamond (UNCD) from 63...
MEMS devices are currently fabricated primarily in silicon because of the available surface machinin...
Tetragonal sp3-bonded diamond has the highest known atomic density. The nature of the bond and its h...
We have characterized mechanical properties of ultrananocrystalline diamond UNCD thin films grown us...
Ultrananocrystalline diamond (UNCD) films are promising for radio frequency micro electro mechanical...
Tetragonal sp3-bonded diamond has the highest known atomic density. The nature of the bond and its h...
Tetragonal sp3-bonded diamond has the highest known atomic density. The nature of the bond and its h...
Ultrananocrystalline diamond (UNCD) films are promising for radio frequency micro electro mechanical...
For the first time working MEMS resonators have been produced using low-temperature deposited (550◦C...
We present the static and dynamic mechanical characterization of several nanocrystalline diamond (NC...
We present the static and dynamic mechanical characterization of several nanocrystalline diamond (NC...
We present the static and dynamic mechanical characterization of several nanocrystalline diamond (NC...
International audienceThe exceptional chemical, mechanical and thermal properties of diamond make th...
We present the static and dynamic mechanical characterization of several nanocrystalline diamond (NC...
International audienceThe exceptional chemical, mechanical and thermal properties of diamond make th...
We have measured mechanical stiffness and dissipation in ultrananocrystalline diamond (UNCD) from 63...
MEMS devices are currently fabricated primarily in silicon because of the available surface machinin...
Tetragonal sp3-bonded diamond has the highest known atomic density. The nature of the bond and its h...
We have characterized mechanical properties of ultrananocrystalline diamond UNCD thin films grown us...
Ultrananocrystalline diamond (UNCD) films are promising for radio frequency micro electro mechanical...
Tetragonal sp3-bonded diamond has the highest known atomic density. The nature of the bond and its h...
Tetragonal sp3-bonded diamond has the highest known atomic density. The nature of the bond and its h...
Ultrananocrystalline diamond (UNCD) films are promising for radio frequency micro electro mechanical...
For the first time working MEMS resonators have been produced using low-temperature deposited (550◦C...
We present the static and dynamic mechanical characterization of several nanocrystalline diamond (NC...
We present the static and dynamic mechanical characterization of several nanocrystalline diamond (NC...
We present the static and dynamic mechanical characterization of several nanocrystalline diamond (NC...
International audienceThe exceptional chemical, mechanical and thermal properties of diamond make th...
We present the static and dynamic mechanical characterization of several nanocrystalline diamond (NC...
International audienceThe exceptional chemical, mechanical and thermal properties of diamond make th...
We have measured mechanical stiffness and dissipation in ultrananocrystalline diamond (UNCD) from 63...
MEMS devices are currently fabricated primarily in silicon because of the available surface machinin...
Tetragonal sp3-bonded diamond has the highest known atomic density. The nature of the bond and its h...