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High Resolution Transmission Electron Microscopy analyses show that the nanostructures are single crystalline and reveal a growth along the c-axis, with a smooth interface.
X-ray diffraction and scanning electron microscopy analyses show that the ZnO N films feature a hexagonal crystal structure with a preferential (002) crystallographic orientation and grow as vertical columnar structures.
TGA, IR, XRD and microscopy analyses show that the Ni particles have a nanostructure of around 5nm and are uniformly dispersed on the Al2O3 ZrO2 support, which exists as an amorphous phase.
A combination of X-ray diffraction and cross-sectional microscopy analyses show that Ag segregates to form precipitates with an average size that increases from < 25 nm to ~ 300 × 300 × 100 nm3 to ~ 600 × 600 × 200 nm3 for Ts = 500, 600, and 700 °C, respectively.
Confocal microscopy analyses show significant astrogliosis, as detected with increased immunoreactivity to GFAP in retinas from cholesterol-fed rabbits compared to control rabbits.
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Microscopy analyses showed that the nanocapsules were spherical, dense, and without aggregates.
Transmission electron microscopy analyses showed that the particle sizes are smaller than 100 nm.
Scanning electron microscopy analyses showed satisfactory topography patterns, very similar to the ones occurring on titanium surfaces.
Transmission electron microscopy analyses showed that TiNO films contain a low density of dislocations.
Additionally, confocal microscopy analyses showed the presence of cells embedded in biofilms ranging in thickness between 62 and 85 μm.
Confocal microscopy and scanning electron microscopy analyses showed that surface structure of V. vulnificus cells was damaged by the purified substance, as reflected by presence of membrane holes, disappearance of cellular contents, and formation of cell cavities.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com