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Two gold contacts, defining measured area (about 50 nm thick) on the layer surface were prepared by sputtering.
3D maps of the layer surface were retrieved and compared with pseudo-relief intensity maps of the same region.
The elemental surface concentrations of carbon, fluorine, oxygen, sulfur, and platinum on the catalyst layer surface were measured before and after fuel cell operation, and the different chemical states of carbon and platinum were identified.
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The RMS roughness of the approximately 5-nm-thick Ga2O3 layer surface is 2.7 nm.
An axonometric AFM image of the Au layer surface is presented in Figure 1b.
The bottom part of the pore structures with barrier layer surface is shown on the inset.
In the oxidation process, the aluminide layer surface is selectively oxidized to form an Al2O3 film.
Therefore, the ZnO seed layer surface is charged by the surface amphoteric reaction with H+ or OH− ions.
At the ignition stage, the balance of (BO)n on the liquid oxide layer surface was considered.
Moreover, the corrosion resistance of the second layer surface is close to that of wrought Inconel 625.
The fundamental solutions for concentrated forces acting perpendicular and parallel to the layer surface are obtained.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com