Exact(13)
On the abyssal plains, where sediments accumulate slowly, chemical and biological processes lead to the formation of metal-bearing coatings around objects such as the ear bones of fishes.
Here, the organic matter is accumulated as coatings around, and through, pyrite grains.
But despite its low-tech origins, it turns out to be one of the most robust coatings around.
These materials are most effective when used as compression coatings around core tablets, which contain the active agent.
The organic matter appears as coatings around the pyrite crystals, but also as immiscible globules with curved boundaries in the calcite (Figure 3).
Nanoscale organic coatings around mineral components of interplanetary dust particles (IDPs) were discovered by a synchrotron X-ray based STXM instrument (Flynn et al., this issue).
Similar(47)
The total thickness of the coatings was around 1.5 μm including a complex Ti/TiN/TiCN adhesion-improving interlayer with a thickness of 450 nm.
The maximum average hardness around 20 GPa and scratching coefficient around 0.1 are found in the coatings with around 2.1 to 2.6 at.% Cu in this work.
Nanoindentation tests indicate that the hardness of the coatings is around 40 GPa.
A high hardness, low friction coefficient and good nanowear resistance are found in the Cr Si N coatings with around 10.1 at.% Si in this work.
Crystallisation of amorphous coatings occurs around 200 °C in a mixture of supersaturated bcc solid solution deriving from Fe and of hcp Mg.
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