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单价阳离子对氧化铝包覆的二氧化钛颗粒电离及聚丙烯酸吸附的特定影响。

Specific influence of univalent cations on the ionization of alumina-coated TiO2 particles and on the adsorption of poly(acrylic)acid.

作者信息

Malgat Alexandre, Boisvert Jean-Philippe, Daneault Claude

机构信息

CIPP, Université du Québec à Trois-Rivières, C.P. 500, Québec, G9A5H7, Trois-Rivières, Canada.

出版信息

J Colloid Interface Sci. 2004 Jan 15;269(2):320-8. doi: 10.1016/j.jcis.2003.08.059.

Abstract

A surface counterion titration method was used to monitor the interaction of monovalents cations (Li(+), Na(+), TMA(+)) with the surface of alumina-coated TiO(2) particles in concentrated media at different pH and electrolyte concentrations. This method allows measuring separately the negative and positive contribution to the surface charge. It showed that Cl(-) and TMA(+) are indifferent ions, but Li(+) and Na(+) specifically adsorb on the non-ionized alumina surface sites. The binding sequence of cations is Li(+)>Na(+)>TMA(+) at all ionic strengths investigated and is consistent with the structure-making and structure-breaking model developed a few decades ago. Polyacrylic acid (PAA) previously neutralized with the corresponding hydroxide (LiOH, NaOH, TMAOH) has been adsorbed on the alumina surface at different pH. The polymer counterion has a significant influence on the polymer adsorption. The sequence of the surface coverage as a function of the polymer counterion follows the order Li-PAA > Na-PAA > TMA-PAA. The much higher surface coverage with Li-PAA and Na-PAA compared to TMA-PAA is explained by the specific adsorption of Li-PAA and Na-PAA on the nonionized alumina surface sites, the same way LiCl and NaCl do.

摘要

采用表面抗衡离子滴定法监测一价阳离子(Li⁺、Na⁺、TMA⁺)在不同pH值和电解质浓度的浓介质中与氧化铝包覆的TiO₂颗粒表面的相互作用。该方法能够分别测量对表面电荷的负贡献和正贡献。结果表明,Cl⁻和TMA⁺为惰性离子,但Li⁺和Na⁺特异性吸附在未电离的氧化铝表面位点上。在所研究的所有离子强度下,阳离子的结合顺序为Li⁺>Na⁺>TMA⁺,这与几十年前提出的结构形成和结构破坏模型一致。预先用相应的氢氧化物(LiOH、NaOH、TMAOH)中和的聚丙烯酸(PAA)已在不同pH值下吸附在氧化铝表面。聚合物抗衡离子对聚合物吸附有显著影响。表面覆盖率随聚合物抗衡离子的变化顺序为Li-PAA>Na-PAA>TMA-PAA。Li-PAA和Na-PAA的表面覆盖率比TMA-PAA高得多,这是由于Li-PAA和Na-PAA与LiCl和NaCl一样特异性吸附在未电离的氧化铝表面位点上。

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