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In both mediated cases, nanoparticle size increase with increasing reaction time regardless of the differences in nucleation or coarsening period.
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The first of these observed the case of increasing nanoparticle size across the crystal.
It is important to mention that in this type of conformation the nanoparticle size is very homogeneous instead of the previous case.
In our case, as the heating temperature increases, the nanoparticle size decreases due to dewetting-induced shrinkage.
For the CeO2 nanoparticles in RPMI media, the nanoparticle size has a significant effect on DF value, while in the case of RPMI+10% FBS, the nanoparticles size does not have a significant effect.
31, 32 For the case of InSe nanoparticles, the intensity of the PL emission is dependent on the nanoparticle size due to the combined effects of the carrier confinement along the c-axis (z-axis) and in the xy-plane.
Based on nanoparticle transport studies using placental ex vivo perfusion models, transcellular transport of polystyrene nanoparticles through the placenta is known to be highly dependent on nanoparticle size.
Such observations provide clear evidence of the direct relationship between Fe3O4 nanoparticle size and FeCl3 concentration.
Nanoparticle size was ∼200 nm as determined by dynamic light scattering.
Vreeland, E. C. et al. Enhanced nanoparticle size control by extending LaMer's mechanism.
How are these effects influenced by nanoparticle size?
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