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The synthesized microspheres have homogeneous morphology and a multimodal porosity.
These fine carbides have spherical morphology and a high homogenized distribution (Senthilkumar et al. 2011).
The scanning electron microscope (SEM) images reveal a compact surface morphology and a moderate grain size.
The continuous layers have a smoothened surface morphology and a high concentration of threading dislocations.
The morphology and a FFT image of the fabricated surface are presented in Figure 4c.
This coating exhibited low-dense morphology and a single-phase octacalcium phosphate (OCP) structure.
The obtained matrix showed high porosity (85%), an interconnected pore morphology and a rapid swelling behavior.
pMMSNs had a spherical morphology and a pore size of 2.2 nm.
The UTFs display a uniform morphology and a periodical layered structure.
It is evident that the particles have uniform size, a homogeneous sphere-like morphology and a narrow size distribution.
SEM can visualize two dimensionally the surface morphology, and a quantitative information is not being provided regarding the selected area.
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