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In the present study we didn't investigated shape of the formed elemental S NPs however literature data and microscopic images indicate that elemental SNPs produced by acid decomposition of different sulfur species are spherical in shape [3,12,19,20].
Scanning and transmission electron microscopic images indicate that the elongated Ni nanorods originate from the catalyst particles at the tips of the CNFs and that their formation is due to the effect of extrusion induced by the compressive force of the graphene layers during growth.
The polarized optical microscopic images indicate that, during the non-isothermal crystallization at a cooling rate of 10 °C/min from 200 °C to room temperature, the neat iPP forms common spherulites, while the diluted microfibrillar blend with 1 wt% of PET has a typical transcrystalline structure.
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Microscopic images indicated that large amount of nZVI coated on plant root surface as irregular aggregates and some nZVI penetrated into several layers of epidermal cells.
Confocal microscopic images indicated that the mitochondria tended to fuse when the lysosomes are intact, whereas 6-h LeuLeuOMe treatment, which induced LMP, ultimately led to mitochondrial fission (Fig. 1F).
Figure 11A D shows light microscopic images indicating that 100 µM ceramide caused fibroblast apoptosis and, interestingly, co-treatment with DIDS resulted in protection, as judged from the considerable higher number of attached fibroblast-like cells.
Scanning force microscopic (AFM) images indicate a dense packing of the particles and a strong flattening in the adsorbed state.
The platelets observed in microscopic images were indicated in round circles.
The layer of polymer on the surface of the particles is clearly visible under the high-resolution electron microscopic image further indicating that the coating of polymer on GoldMag was successful (Fig. 2b).
SEM images indicated that the microscopic morphology of micellar-hybridized DBC gels possessed a denser three-dimensional network structure.
Visualization of microscopic images of single cells indicated that the uptake of DNA-GNPs was highly dependent on the type of functionality of the end group in the DNA-GNP complex; the functionality of CH3, and SH resulted in less cellular uptake than that for modifications with NH3, PO3, OH for the same incubation time.
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