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The formed seal using graphite and calcium carbonate blend is shown in Fig. 10b.
Based on simulations of the 7Li spectral data, it is suggested that three lithium species are present, whose concentration is determined by the sulfonated polystyrene/PA6 ratio in the blend; the miscibility of the blend is shown to be mainly correlated with one of the species.
The residual mass of the PLA grades 3051D and 3001D and of their 50 50 blend is shown in Figure 5.
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Cross sections of PPSU, PPSU/MWCNT and PPSU/FMWCNT blend are shown in Fig. 6d f.
The SEM micrographs of top surface of PPSU, PPSU/MWCNT and PPSU/FMWCNT blend are shown in Fig. 6a c.
The values of interfacial tension found analyzing the dynamic behavior of one of the PMMA/PS blend were shown to decrease with temperature.
By transmission electron microscopy and dynamic mechanical analysis, the blend was shown to be a phase-separated material in which hSBR-rich domains with uniform diameter of ca. 20 rim are dispersed in an iPP-rich matrix.
Using the method of equilibrium melting points, the Flory–Huggins interaction parameter of the aPP/iPP blend was shown to possess a significantly negative value (χ12 = −0.21), which proves that the blend is indeed miscible in the melted amorphous as well as semicrystalline states as previously reported in the literature.
Further, in the blends of d-PSU and PSU PhAh, the χ parameter was found to be very sensitive to the molecular weight of PSU PhAh: if the molecular weight of PSU PhAh is small, the blend was shown to be phase-separated, i.e. the effect of the end-group of PhAh on the miscibility and the χ parameter was found to be very large.
Absorption spectra for oleic acid capped CdSe nanocrystals (CdSe OA)), pristine MDMO-PPV, and their blend are shown in Figure 1 b.
The in vitro drug release profile of ceftriaxone sodium in enzyme-free simulated gastric fluid (SGF) followed by enzyme-free simulated intestinal fluid (SIF) from the CAP-coated calcium alginate beads prepared with various sodium alginate-polymer blends is shown in Fig. 6.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com