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The high-resolution transmission electron microscopy results demonstrate that the 2D nano-leaves structure is of single crystalline nature.
Both photoluminescence (PL) spectra and fluorescence microscopy results demonstrate that larger Ag NPs (5 25 nm) are better at reserving electrons than smaller ones (∼4 nm).
Taken together, our microscopy results demonstrate that shattering weeds display abscission layer developmental differences compared to wild and cultivated rice.
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1H NMR, size exclusion chromatography and transmission electron microscopy results demonstrated successful synthesis of the SCNPs.
Light microscopy results demonstrated trends of a decrease in dermal thickness and an increase in cell density for stressed vs. control samples, but the differences were not significant.
The microscopy results demonstrated the formation of many fine droplets in the vicinity of the meniscus boundary during ORR, which was attributed to vapor condensation on the surface.
The X-ray and microscopy results demonstrated that at least at some compositions, the technique employed was successful in exfoliating and widely dispersing the clay platelets.
Electron microscopy results demonstrated significant (p<0.01) increases in collagen fibril diameter of 15.9%, 22.4%, and 22.9% for the upper, mid, and lower layers of the dermis, respectively, for the stressed skin compared with the control skin.
Flow cytometry and confocal microscopy results demonstrated considerable cellular uptake and internalization of the particles by various cancer cells [ 136].
Atomic force microscopy (AFM) and scanning electron microscopy (SEM) results demonstrate that the sample deposited at 8 cm distance has a relatively smooth, uniform and homogeneous surface.
Transmission electron microscopy (TEM) results demonstrated Bamboo-like structure of CNx-NTs.
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