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Fundamentally, the amount of centrifugal force, which is attributed to the infiltration force, affects the morphology of the nanostructures due to augmentative quantity of infiltrated substances [17].
The calculated data of rotational speed, produced angle, and infiltration force are shown in Table 1.
The higher infiltration force enables the solution to fill out more area of the template.
The rotational speed of centrifuge is directly proportional to the infiltration force that penetrates into the nanochannels of the template.
A small amount of centrifugal force which is correlated to the infiltration force has produced various aspects of nanostructures, such as orientation, densification, and morphological distribution.
As the infiltration force is increased, the infiltration process has only shown (b) the partially filled cavities of nanochannels with some parts remaining unfilled.
Similar(40)
Nevertheless, for all the infiltration forces, the obtained nanostructures replicate the shape of the alumina template.
Different infiltration forces obtained by varying rotational speeds produced diverse forms of nanostructures and their distribution.
It can be clearly seen that the nanostructures are influenced by variation in the infiltration forces.
Different rotational speeds of the centrifugation process have introduced different amounts of infiltration forces into the alumina template.
It is a new method to correlate the infiltration forces of the solution to the morphology of produced nanostructures.
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CEO of Professional Science Editing for Scientists @ prosciediting.com