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Scanning and transmission electron microscopy study revealed very complex structure and sub-structure of SiO2 particles.
A scanning electron microscopy study revealed the spherical morphology of the particles.
Atomic force microscopy study revealed that the particle size of the films is a nanometers and particle size is decreased with increase in Cu doping levels.
Cross-polarized light microscopy study revealed that drug crystals in the external aqueous phase were absent when the SLNs were prepared at ≤0.05% drug concentration.
Depolarization of the membrane potential of Staphylococcus aureus and confocal laser-scanning microscopy study revealed that Pis-1[NkG] effectively penetrated the bacterial cell membrane and accumulated in the cytoplasm, whereas Pis-1[PG] did not penetrate the membrane but remained outside or on the cell surface.
An electron microscopy study revealed that the carbon nanofibers, ~10 nm thick and 6 μm long, were decorated with Au nanoparticles with a diameter of 10 nm.
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Transmission electron microscopy study reveals a difference in the microstructure of the SiO2 films.
Scanning electron microscopy study reveals the presence of interconnected pores with a pore size ranges from 50 to 300 μm.
High-resolution transmission electron microscopy study reveals that CuO nanowires grow along the [110] direction.
Transmission electron microscopy studies revealed that more autophagosomes were present in OMT treated cells than in non-treated cells.
Electron microscopy studies revealed supermacroporous structure of the developed cryogels with pore size of 5 100 μm.
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CEO of Professional Science Editing for Scientists @ prosciediting.com