By combining mask-less lithography and chemical vapor deposition (CVD) techniques, a novel two-stage diamond anvil has been fabricated. A nanocrystalline diamond (NCD) micro-anvil 30 μm in diameter was grown at the center of a [100]-oriented, diamond anvil by utilizing microwave plasma CVD method. The NCD micro-anvil has a diamond grain size of 115 nm and micro-focused Raman and X-ray Photoelectron spectroscopy analysis indicate sp3-bonded diamond content of 72%. These CVD grown NCD micro-anvils were tested in an opposed anvil configuration and the transition metals osmium and tungsten were compressed to high pressures of 264 GPa in a diamond anvil cell
This article reports a process for preparing nanocrystalline diamond films by ion bombardment of dif...
In this work, nanocrystalline diamond was deposited with a direct-current micro-plasma device on sub...
Diamond is widely known for its extraordinary properties, such as high thermal conductivity, energy ...
We have fabricated diamond anvils specially designed for use in ultra-high pressure electrical trans...
Electrical and magnetic sensors can be lithographically fabricated on top of diamond substrates and ...
Diamond containing engineered color centers is rapidly becoming a medium of choice for quantum infor...
Thin nanocrystalline diamond (NCD) films were grown by microwave plasma chemical vapor deposition (M...
Silicon is currently the most commonly used material for the fabrication of microelectromechanical s...
The exceptional material properties of bulk diamond like high stiffness, high thermal conductivity, ...
Diamond is one form of carbon structure. The extreme hardness and high chemical resistant of diamond...
The tried and tested multianvil apparatus has been widely used for high-pressure and high-temperatur...
AbstractThe tried and tested multianvil apparatus has been widely used for high-pressure and high-te...
Nanostructured diamond (NSD) films were grown on silicon and Ti–6Al–4V alloy substrates by microwave...
Static compression experiments over 4 Mbar are rare, yet critical for developing accurate fundamenta...
The studies covered in this dissertation concentrate on the various forms of diamond films synthesiz...
This article reports a process for preparing nanocrystalline diamond films by ion bombardment of dif...
In this work, nanocrystalline diamond was deposited with a direct-current micro-plasma device on sub...
Diamond is widely known for its extraordinary properties, such as high thermal conductivity, energy ...
We have fabricated diamond anvils specially designed for use in ultra-high pressure electrical trans...
Electrical and magnetic sensors can be lithographically fabricated on top of diamond substrates and ...
Diamond containing engineered color centers is rapidly becoming a medium of choice for quantum infor...
Thin nanocrystalline diamond (NCD) films were grown by microwave plasma chemical vapor deposition (M...
Silicon is currently the most commonly used material for the fabrication of microelectromechanical s...
The exceptional material properties of bulk diamond like high stiffness, high thermal conductivity, ...
Diamond is one form of carbon structure. The extreme hardness and high chemical resistant of diamond...
The tried and tested multianvil apparatus has been widely used for high-pressure and high-temperatur...
AbstractThe tried and tested multianvil apparatus has been widely used for high-pressure and high-te...
Nanostructured diamond (NSD) films were grown on silicon and Ti–6Al–4V alloy substrates by microwave...
Static compression experiments over 4 Mbar are rare, yet critical for developing accurate fundamenta...
The studies covered in this dissertation concentrate on the various forms of diamond films synthesiz...
This article reports a process for preparing nanocrystalline diamond films by ion bombardment of dif...
In this work, nanocrystalline diamond was deposited with a direct-current micro-plasma device on sub...
Diamond is widely known for its extraordinary properties, such as high thermal conductivity, energy ...