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To that aim, the diffusion equations for the permeating species have been solved in a large number of 3D geometries, built to simulate a bilayer structure with defects randomly distributed on the coating surface.
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It can be seen that, before calcination, the O was homogeneously distributed within the PR sphere, and the P and Ca were mainly distributed on the ACP coating; a few P and Ca entered into the PR sphere; and after calcination, P, O, and Ca were homogenously distributed on the cage shell and the yolk, which indicated that the cage shell and the yolk are amorphous ACP.
In addition, much shorter and wider nano-scale segments were distributed on the rough discontinuous surface (discontinuous zone) of Q1 and Q2 coating compared with P1 coating.
It can be clearly seen that after ultrasonic disruption and magnetic stirring, PCBM blended with the CdS/TNT powders, and then after spin coating, the CdS/TNT powders are distributed on the surface of active layer.
Moreover, more uniform, dense nano-spheres and papules (approximately 60 to 150 nm in diameter) were distributed on the continuous surface of micropapillae with a relatively higher degree of overlap in comparison to Q1 coating (Figure 4d,e).
Similar protruding droplets have been observed by SEM, being typically found randomly distributed on PVD-TiN coating surfaces [26].
The prepared HCNF@NPC-S composite with high sulfur content of 77.5 wt.% showed an obvious core shell structure with an NPC layer coating on the surface of the HCNFs and sulfur homogeneously distributed in the coating layer.
The results show that the microstructure of the T15M composite coating is mainly composed of martensite, austenite and carbides which mainly distribute on the original austenite grain boundaries.
We showed how different coat proteins are distributed within the coat structure and how the assembly dynamics of N-BAR proteins relate to membrane shape changes.
Briefly, native, acid base pretreated, and enzymatically hydrolyzed SB were distributed on a 12 mm glass coverslip coated with poly-L-lysine (Sigma Diagnostics, São Paulo, Brazil).
The obtained coating was homogeneously distributed on PB granule surface and demonstrated to confer PB an increased resistance to fracture load.
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