By P. Somasundaran and B. Markovic (Eds.)
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Additional info for Concentrated Dispersions. Theory, Experiment, and Applications
When the adsorption get worse, the dispersion become poorer or even not dispersed at all, leading to closely packed aggregates. In this situation, the G ' value is expected to be extremely high due to its closeness to a solid. As one observed that MR110 ink has the smallest G value resulted from relatively good polymer adsorption. CPAS has the closest G to MR110 ink. 5 has a higher G ' than that of C P A 5 , which may come from the relatively big aggregates because of insufficiency of functional group.
4, the transverse susceptibility result is illustrated, where one can see that the magnitude of transverse susceptibility of MR110 is the highest. 5 and CPA3 respectively. It is reasonable to say that CPAS has the best dispersion among C P A inks although it is worse than MR110 ink. One thing needs to be paid attention is that CPA3 has no peak, which is similar to the profile o f dry magnetic powder. Thus, CPA3 has the worst dispersion quality, which is consist with the rheological results. From the results above, we can conclude that CPAS is the best binder among all these C P A polymers, although it is inferior to MR110.
Nikles , and Alan M. Lane 1 1 3 MINT Center and Departments of Chemical Engineering and Chemistry, The University of Alabama, Tuscaloosa, AL 35487 Department of Chemistry and Geochemistry, Colorado School of Mines, 1500 Illinois Street, Golden, CO 80401 2 Abstract A new wetting binder, methyl acrylate and 2-hydroxyl ethyl acrylate copolymer was synthesized and characterized for its ability to disperse magnetic particles in an organic solvent and compared to the commercial binder MR110. The effects of the amount of functional group and the binder molecular weight were studied.
Concentrated Dispersions. Theory, Experiment, and Applications by P. Somasundaran and B. Markovic (Eds.)