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It was shown that sodium salicylate complexes the surface metal ions and prevents the dissolution of metallic substrates.
Metal oxides may be prepared as thin (5 50 Å) films on top of metallic substrates.
We show that the optical contrast is largely enhanced using semitransparent metallic substrates, instead of opaque metallic substrates, which enable accurate characterization of ultrathin mica flakes.
Cleaned glass, conducting glass and metallic substrates were used.
There is a great interest in growing biaxially textured STO on metallic substrates.
However, the possibility to optically detect mica flakes on metallic substrates has not been reported yet.
Significant effort has been devoted to coat HAp ceramics on metallic substrates.
Further studies demonstrate that the oxidation of porous metallic substrates greatly decrease the oxygen permeation flux.
The problem is that HAP coating on metallic substrates is easily exfoliated at the boundary between HAP and metallic substrates, i.e. titanium (Ti).
However, in applications such as electrodes, it is desirable to grow CNTs directly on conductive substrates, especially metallic substrates.
We show that optical visualization of ultrathin mica flakes on metallic substrates is viable using semitransparent gold as substrates.
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