By Chaoyang Wang, Zhen Tong, Fang Zeng, Biye Ren (auth.), Dan F. Anghel (eds.)
Praise to D.F. Anghel's Aqueous Polymer
"The quantity should be a beneficial source for these drawn to complexation among water-soluble polymers and surfactants and alertness scientists operating during this area."
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Additional resources for Aqueous Polymer — Cosolute Systems: Special Issue in Honor of Dr. Shuji Saito
Since the aggregates are growing this suggests that no free water is present within the surfactant aggregates, and is consistent with the DSC results. However, upon the addition of more aqueous polymer phase (P1, P2), water diﬀusion is increased. 11), this, again, indicates a change into an associate structure at P3 where water diﬀusion is less hindered. The molecular species in the continuous medium, toluene, and pentanol show rather similar diﬀusional behavior. As the aqueous phase content is increased the diﬀusion coeﬃcients decrease.
Steric hindrance by longer R on PAA may be responsible for the smaller T2¢ ) T1. Also the number of surfactants in a micelle on the polymer may be considered here. However, as deduced from the order in Eq. (1), perhaps micellar DeA-Ac on PAA may be more dissociated than DeA-Pr, DeA-Bu and also DeA-Cl in this order and, therefore, between T1 and T2¢ more space on PAA may be available for further binding in this order (see earlier). The appearance of a plateau in the curve in Fig. 10 shows two breakpoints at both ends which are not identiﬁed with any of the critical points shown in Table 2.
2a. 4, and then becomes almost constant with further increase in aBHDACl. e. CMC, PSS, and PAA, gr remains more or less constant. A deviation from the ideal behavior (shown by broken lines) especially in the HTAB-rich region of the mixture shows strong negative departures in pure water and in aqueous DX. In contrast, s (Fig. 2b) signiﬁcantly increases in this region when CMC is present in comparison to DX. 3 and 14%, respectively, for pure Fig. 2 gr versus mole fraction of BHDACl for BHDACl+HTAB mixtures in the presence of various polyelectrolytes.
Aqueous Polymer — Cosolute Systems: Special Issue in Honor of Dr. Shuji Saito by Chaoyang Wang, Zhen Tong, Fang Zeng, Biye Ren (auth.), Dan F. Anghel (eds.)