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Detailed microscopic characterizations show that large diameters (>15 nm) Mo NWs are highly porous, while small diameters (<7 nm) are made of solid nanocrystalline grains.
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Microscopic characterization shows that the grain size of U Mo fuel meat increases with the annealing temperature, as expected.
The microscopic characterization showed that the deposited alloy forms nanoparticles, of which the atomic ratios of Pt and Ru (Pt Ru ratios) are uniform and are in accordance with the overall Pt Ru ratios of the samples.
Scanning electron microscopic (SEM) characterization showed that the compact TiO2 film was changed to a mesoporous structure when DNA was present in the deposition solution, which might be the result of TiO2 particles growing along the backbones of the double-helical structure of DNA molecules.
According to the microscopic characterization and analysis shown in Figure S2 in the Supporting Information, the highest frequency cut off is ∼158 nm.
Microscopic characterizations of fracture surface in nanocomposites are analyzed using the scanning electron microscope (SEM).
Microscopic characterizations were performed by TEM and SEM using respectively on Delong Instruments model LVEM5 and JEOL 646OLV microscopes.
Microscopic characterizations have been performed to confirm the 3DGN and mesoporous Co3O4 nanostructures.
Microscopic characterizations have been performed to confirm that mesoporous Co3O4 nanostructures are built-up by numerous nanoparticles with random attachment.
These atypical isolates were subjected to elaborate, microbiological, immunological, biochemical, physiologic and electron microscopic characterizations.
Hence, the XRD characterization shows polycrystalline films.
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