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The NW's morphology, dimensions, and density are characterized by SEM.
These CuNW coated surfaces were characterised for their morphology, dimensions and wettability.
Electrospinning has been regarded as the most effective and versatile technology to produce nanofibrous nonwovens with controlled fiber morphology, dimensions, and functional components from various polymeric materials.
Considering of the final observation result, the obtained SiO2 negative replica preserved the super light trapping architectures successfully from the aspects of morphology, dimensions, and distributions of the scales.
For a better understanding of the thermal transport characteristics of porous Bi films and other porous 2D structures, more detailed studies on the effects of surface morphology, dimensions, and crystalline properties have now been initiated.
The morphology, dimensions, and crystallinity were characterized by transmission electron microscopy (TEM, F2010, Japan), scanning electron microscopy (SEM, JEOL 5700, Japan), and X-ray diffraction (XRD, X'Pert PRO, Cu Ká radiation), respectively.
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The surface morphology, dimension, and orientation of SWCNTs can be characterized by scanning electron microscope has been employed to study the morphology of SWCNTs.
The samples were characterized from a microstructural point of view, in order to evaluate the pore morphology, dimension and degree of interconnectivity.
A panel of PEGylated dendrimers with three different generations of 2, 3, 4 was prepared to investigate the effect of dendrimer architecture on the properties and therapeutic efficacy of the resultant NK-loaded delivery systems in terms of the morphology, dimension and enzyme activity.
Furthermore, the effects of the deposition conditions, including the solution composition and reaction time and temperature, on the morphologies, dimensions, and crystallinities of the Te nanowires were analyzed to investigate the growth mechanism.
The main features of these nanostructures, such as their composition, morphology, dimensions, spacing, and order are of primary significance for the chemical, mechanical, optical, and electromagnetic properties exhibited [22, 23].
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