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Thermophoresis force is found to be dominant for cylindrical nanoparticles at lower temperature of nanofluid.
The NRs' shape factor, g, is about 1 if we approximate the NRs as cylindrical nanoparticles [21].
For spherical nanoparticles ψ = 1 or n = 3 and for cylindrical nanoparticles ψ = 0.5 or n = 6.
The model proposed by Ordonez-Miranda et al. [Appl Phys Lett 2001 98 233): 111], for the thermal conductivity of composites with low volume fractions of nanoparticles is extended for high volume fractions of spherical and cylindrical nanoparticles.
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Recently, investigation shows that cylindrical shaped nanoparticles are seven times more deadly than traditional spherical shaped nanoparticles in the delivery of drug to breast cancer cells.
The hydrolysis of the PtBA block of the side chains resulted amphiphilic cylindrical core shell nanoparticles.
Cylindrical shape nanoparticles showed best performance in respect to overall heat transfer coefficient and heat transfer rate among the other shapes for different baffle angles along with segmental baffle.
The results of the scaling analysis on particle size are plotted for cylindrical-shaped nanoparticles in Figures 2 and 3. Here, size of the cylindrical particles is representative of its diameter.
Depending on these parameters, spherical, cylindrical and vesicle-like nanoparticles are synthesized.
With respect to forces, it is found that the Brownian force is more active for nanoparticles of cylindrical shape and in smaller-sized particles with a volumetric concentration of 1%.
This network structure, consisting of high aspect ratio cylindrical fibers, facilitates homogeneous nanoparticle distribution.
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