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Significant changes in the film surface morphologies due to the plasma implantation treatment were observed.
As a result, the Cu films have dense surface morphologies due to the plastic deformation of impacted particles.
The coatings had layered morphologies due to the deposition and solidification of successive molten or semi-molten splats.
By comparing Figure 2a with Figure 2b,c, we can see that nanoparticles have different morphologies due to the presence of CNTs.
It is proposed that drastic capacity fading and the variation of resistive components (SEI layers and charge transfer) can be influenced by morphologies due to the calcination temperature.
The coatings exhibited characteristic splatlike, layered morphologies due to the deposition and re-solidification of successive molten or semi-molten powder particles.
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These samples exhibited more irregular morphology due to the harsh conditions (high temperature) of synthesis procedure.
Figure 5 demonstrates a significant change of the surface morphology due to the plasma treatment.
The TEOS-nano-TiO2 treatment (Tn) shows a rather similar morphology due to the superficial SiO2 gel accumulation (Fig. 4).
When grown on LB agar, WT and C-waaA presented a wrinkled colony morphology due to abundant biofilm exopolysaccharide.
We supposed that the alteration in cell morphology due to ETO resulted into inhibition in the migration of B16F10 cells.
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