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The densities of SWCNTs were 0.8 ± 0.2 SWCNTs μm−1 and average diameter distribution at ~ 0.87 nm.
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In the case of pNIPAM/IP/PCL composite nanofibers, the average diameter and diameter distribution were quite similar to those of pure pNIPAM NFs (Figure 2c and f).
An orthogonal experimental method was designed to assess the influence of the electrospinning processing parameters on average diameter and distribution of poly methyl methacrylate) (PMMA) fibers.
The average diameter and distribution of the Pt particles are independent of the support type and a high degree of catalyst dispersion has been achieved on all supports.
The average diameter, size distribution, and ζ-potential of the copolymers and DSP copolymer ionic associates were determined by dynamic light scattering, and particles were visualized by scanning electron microscopy and transmission electron microscopy.
An average diameter and distribution of particle size was reported from 3 runs.
Lipidic nanoparticles (NP), formulated from a phase inversion temperature process, have been studied with chemometric techniques to emphasize the influence of the four major components (Solutol®, Labrasol®, Labrafac®, water) on their average diameter and their distribution in size.
Epistatic effect QTLs were also identified for taproot length, average diameter, and root distribution.
Comparing with the slower heating rate, 0.1 °C/s, the average diameters and distributions (standard deviation, SD) of In2Se3 nanowires with and without the RTA process are 97.14 ± 22.95 nm (23.63%) and 119.06 ± 48.75 nm (40.95%), respectively.
The results demonstrate that the average diameters and distributions of Au nanoparticles with and without the RTA process are 19.84 ± 5.96 nm (30.00%) and about 22.06 ± 9.00 nm (40.80%), respectively.
An average diameter (d TEM) and distribution of the clusters were determined from the best fitting of the histograms using Gaussian function.
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