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The wall thickness and wall surface morphology of the nanotubes is also controllable since it simply depends on the Ni fraction.
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A (111 -orientation preferred Co3O4 film with scattered triangular grains and elongated nano-wall surface morphology was prepared at the deposition temperature (Tdep) of 773 K, while randomly grown Co3O4 films with porous structures were found with lower or higher Tdep.
For the hot-wall epitaxy, growth rate, surface morphology, and doping concentration could be predicted qualitatively with taking account of the depositing surface conditions.
Various process variables impact the physical (e.g. internal and surface morphology, size, and wall thickness), mechanical (mechanical strength), and structural properties (flowability, glass transition temperature, degree of crystallinity and permeability) of encapsulated flavors, and thus impact their overall quality.
The surface morphology of the metal wall exposed to distilled water has a measurable effect on damping and resonant frequency of the pendulum.
The surface morphology, inner and outer diameter, wall thickness, and length of TaO x nanotubes were characterized by scanning electron microscopy (SEM).
In our present studies, it was revealed that as the concentration of the chitosan increased, the pore wall tended to become thicker and more homogenous and the surface morphology also became more dense.
The influence of the surface morphology, filling ratio, and working fluid on the thermal resistance, evaporator wall temperature, and start-up time of the loop heat pipes were investigated.
In the present study, according to the analysis of the surface morphology of fish scale, a biomimetic functional surface structure for the interior wall of elbow is designed.
Morphology characterization confirm that Ni nanoparticles with sizes around 20 nm are uniformly scattered on the pore wall surface of the three-dimensional graphene without apparent agglomeration.
Surface morphology and elemental analysis studies.
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