Exact(6)
Electron microscopic images of 1.0 wt.% TiO2-coated particles revealed that the oxide formed a compact coating over the cathode particles.
TEM images showed a compact coating layer on the surface of the core material that had an average thickness of about ∼15 nm.
These results indicate that a compact coating of FAS can be formed, even on the slider surface of a carbon film with few hydroxyl groups, by treating the surface with FAS solution or FASI solution.
The microstructural observations on the surface and cross sections revealed that both the size of pores and the number of discharge channels decreased significantly as the current frequency increased, resulting in a compact coating layer.
SEM characterize results indicate that high power and short standoff distance will result in a compact coating with high hardness and low porosity, and with the Vickers hardness of 739HV.
The surface morphology and particle agglomeration were investigated using SEM, TEM image showed a compact coating layer on the surface of the core materials that had average thickness of about 20 nm.
Similar(54)
After adding Bi into Ni coating, a more compact coating with smoother surface was obtained.
The best protection was obtained with a relatively compact coating, generated with 32 g l −1 NaAlO2.
The kinetics of reduction of a Resazurin, Rz, -based photocatalyst activity indicator ink, paii, on a commercial sample of self-cleaning glass, Activ™ is examined; the latter has ca. a 15 nm compact coating of anatase TiO2 which serves as the active photocatalyst layer.
While composite coatings obtained only under mechanical stirring exhibit a rather irregular surface morphology, with pronounced 3D multinodular protrusions, a more uniform and compact coating is attained under application of US agitation.
This phase is a compact black coating.
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