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In the surface modification process, the properties of the surface of the substrate material are changed.
During the modification process, the maximum temperature reached 1500 °C in the mid-bottom part of CFu.
In this chapter, the preparation methods, the characterization methods, the postproduction process including the solidification techniques and surface modification process, the common dosage forms, and clinical applications of nanosuspension DDS are introduced and discussed.
In order to confirm the modification process, the FTIR spectra analysis was utilized, as shown in Fig. 3b.
After modification process, the modified nanoparticles prepared are in the range of 58-73 nm in diameter.
In the modification process, the temperature is quite crucial since it is kinetically favorable of de-alumination in citric acid etching of alumina framework.
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Compared with other traditional modification processes, the content of rGO was calculated to be about 8.92% (Fig. S2b).
Nanocomposites properties as a function of clay nature, solid content during the modification process and the excess of surfactant in the organophilic clay were analysed.
The modification process altered the surface morphology and structure of the membrane by forming hydrophilic microspheres on the membrane surface.
Many physical and chemical phenomena occur in the modification process including the plasticity and depolymerization.
The ACCIS ion data appear to demonstrate the effect of the ceramic modification process of the metal surfaces.
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