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The thicknesses of AlN and diamond layers are 1μm and 700nm, respectively.
For the deposition of well-adhesive, low-doped diamond layers on titanium substrates a gradient layer is designed.
Clusters are multilayered and composed of two diamond layers (resp. grain sizes: about 1 nm and 10 nm) periodically repeated.
Nonetheless, the process window for obtaining such diamond layers is small, which results in limited reproducibility.
High fluences, in fact, can lead to high quality diamond layers.
The study initially explored the possibility of applying various types of carbon materials, such as fullerenes, carbon nanotubes, diamond layers, and carbon nanomaterials to bone tissue regeneration.
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At each site the scientists looked at, the diamond layer in the rocks correlates to the date of the hypothesized impact.
Douglas J. Kennett, a University of Oregon archaeologist who is the lead author of the Science paper, said no Clovis points or bones of the extinct animals had been found above the diamond layer.
At first a highly boron-doped diamond layer is deposited, which shows good adhesion to the titanium substrate, followed by a low-boron-doped diamond layer on the surface.
The gas mixture was supplied to the reaction chamber, providing a 0.24 µm h−1 growth rate for the diamond layer.
This effect is attributed to the oxidation of some amorphous carbon areas scattered over the diamond layer covering the tip.
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