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As shown in TEM images (Fig. 5b), the blue UCNPs are spherical in shape with uniform size of 27.63 ± 0.81 nm.
These images show that the prepared nanowires are cylindrical in shape with uniform cross-section over their whole length and wires exhibit homogenous contours.
As seen in Fig. 2a, SEM image showed that the enzymatic particles have flower-like globular shape with uniform size (~1 μm).
The SEM and XRD results showed that the obtained nanoparticles had a spherical shape with uniform particle size distribution and cubic crystallography.
The surface-modified UCNPs are spherical in shape, with uniform size (35.99 ± 1.85 nm), size distribution, and coating, as observed in TEM images (Fig. 5c).
The morphologies of pre-synthesized ZnO nanorod arrays are first examined by SEM. Figure 1a shows that the ZnO nanorods present a well-defined hexagonal shape with uniform diameter of about 126 nm.
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The principle is to blend shapes with uniform aspects to define a shape with a variable aspect.
While significant advances have been reported in the use of electrospinning for vascular grafts both at in vitro and in vivo level, most of the work is limited to straight, tubular shapes with uniform diameters.
Figure 4a shows that these gold nanoplates are around 220-280 nm in size along their longest edge, having triangular and truncated triangular shapes with uniform edges.
The common wisdom is that steady-state hilltops should display convex shape with both uniform soil thickness and uniform rates of lowering of the soil bedrock interface.
A close inspection to the core-shell particles reveals that the core-shell composite particles are of spherical shape with nearly uniform size, although the size of these ZrO2cores is not very uniform as shown in the TEM image.
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