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XRD of the same powder treated at 400°C/1 h in a conventional electric furnace (f).
The ND powder treated by PFOTES was mixed with the Al2O3 powder by ball milling to ratios of 0.01 wt.%, 0.03 wt.%, and 0.05 wt.% ND.
Fig. 3 a, b XRD patterns and c, d UV-vis reflection absorption spectra of disk from pure wool powder (WP disk) and disk from wool powder treated with AgNPrs (WP-Ag disk).
Fig. 5 SEM images of different samples: a, b pure WPs, c, d WPs treated with AgNPs (WP-Ag), e, f disks from wool powder treated with AgNPs (WP-Ag disk).
b UV-vis extinction spectra of silver AgNP solution before and after assembly on WPs Fig. 2 a Photograph of pure wool powder (WP), wool powder with AgNPrs (WP-Ag), pure wool powder disk (WP disk), and disk from wool powder treated with AgNPrs (WP-Ag disk).
The placebo was a single dose of 0.6 g of lactose powder treated with unmedicated 90% ethanol/water solution.
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The technique involves drilling out a small quantity of bone powder, treating it with detergents and enzymes to extract the protein, and then removing the DNA.
Figure 4 Mechanically activated graphite powders treated for 150 h in argon gas atmosphere.
Fig. 4 XPS spectra of disk from wool powders treated with AgNPs (WP-Ag disk): (a) survey; (b) Ag 3d.
Figure 4 XRD patterns of the calcined colloidal powders treated at different temperatures in air for 5 h.
The powders treated in plasma jet and recovered in water were analyzed using laser particles sizer and their morphology was interpreted with a help of an optical microscope.
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