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Newly designed diblock dispersant for powder stabilization in water-based suspensions
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Newly designed diblock dispersant for powder stabilization in water-based suspensions

Chia-Chen Li, Shinn-Jen Chang, Chi-Wei Wu, Cha-Wen ChangRuo-Han Yu
Journal of Colloid and Interface Science, 卷.506, 頁碼.180-187
11/2017
PMID: 28735191

摘要

Adsorption Dispersant Dispersion DLVO theory Polyacrylate Titania Electronic Optical and Magnetic Materials Biomaterials Surfaces Coatings and Films Colloid and Surface Chemistry
A newly designed dispersant for water-based suspensions, ammonium poly(methacrylate)-block-poly(2-phenoxyethyl acrylate) (PMA-b-PBEA), is proposed in this study. According to the results of rheological analysis, the dispersion efficiency of this new dispersant is superior to that of the commercially available ammonium polyacrylate (PAA-NH 4 ). The diblock structure of PMA-b-PBEA, which simultaneously contains a low-polar anchoring head group and a water-dissociable stabilizing moiety, is the main cause for its extremely high efficiency for powder dispersion. The unique structure not only results in effective adsorption approximately double that of PAA-NH 4 , but also produces a low number of counter-ions that compress the electrical double layer and ruin powder stabilization. Based on Derjaquin-Landau-Verwey-Overbeek calculations, the large adsorbance of PMA-b-PBEA gives the powder, titania (TiO 2 ) in this study, a high steric stabilization energy. In addition, PMA-b-PBEA provides TiO 2 with a remarkably high electrostatic energy because it generates fewer counter-ions. This energy provides excellent dispersity of powder in the suspensions with a high solid content of 60 wt% without showing any rheological hysteresis.

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