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Plotting the relative current change versus the hydrodynamic diameter of PEG revealed a sigmoidal dependence and an upper transition point with a cutoff at 1.9 nm hydrodynamic diameter.
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DLS hydrodynamic diameter of PEG-covered GNPs was 45.2 ± 2.6 nm.
The hydrodynamic diameter of SWCNT-PEG measured by DLS corresponds to the equivalent hydrodynamic diameter of a sphere that has the same translational diffusion coefficient.
In comparison, the average diameter of the PEG-50 spheres was determined to be 476 um with a standard deviation of 174 um.
Figure 5 shows the change in the average diameter of PLA fibers with different PEG contents as a function of atmospheric temperature.
a The average hydrodynamic diameter of NGO, NGO-PEG, and rNGO-PEG.
The average diameter of PLA fibers and its standard deviation were decreased with increasing PEG content.
Particularly, the addition of 5 wt% PEG to PLA induced a dramatic decrease in the average fiber diameter of PLA fibers.
The diameter reflects the size of PEG which does not enter the pore due to steric exclusion and is in excellent agreement with the expected nominal diameter of the DNA nanopore of 2.0 nm.
Results showed that the average diameter of PLA/GO-g-PEG electrospun nanofibers decreased with filler content.
The hydrodynamic diameter of the PAMAM-PEG-PLL-siRNA complex was determined by dynamic light scattering at a charge ratio ranging from 1 to 3 relative units.
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