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The surface characteristics and morphology of the coated and uncoated support were evaluated through scanning electronic microscopy and dispersive energy microanalysis.
The composition and microstructure of the coating layer had been analyzed by means of X-ray diffraction (XRD) and glow discharge spectrum (GDS), and the surface morphology of the film had been surveyed through scanning electronic microscopy (SEM).
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Additionally, through phase-contrast and scanning electronic microscopy, it was shown that aging TSCs were large, flat and heterogeneous in morphologies while young TSCs were uniformly elongated.
The appearance and structural properties of the samples were investigated through analysis of water absorption and compressive strength, X-ray diffraction, and scanning electronic microscopy.
The Atomic Force Microscopy (AFM) and Scanning Electronic Microscopy (SEM) revealed spherical nanoparticles with uniform size.
The morphology of nanocomposites is characterized using transmission electronic microscopy and scanning electronic microscopy.
Char morphology was observed by scanning electronic microscopy (SEM).
Scanning electronic microscopy of rhenium electrodeposits were obtained.
This was confirmed by scanning electronic microscopy (SEM) results.
optical microscopy, scanning probe microscopy and scanning electronic microscopy are used to test their measurement capabilities based on the developed star structures in lateral and longitudinal directions, respectively.
Finally, the microstructures are analyzed using the scanning electronic microscopy and fourier transform infrared spectroscopy.
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