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A study on the aqueous dispersion mechanism of CuO powders using Tiron

机译:Tiron对CuO粉体水分散机理的研究

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Tiron is an anionic surface active agent, known to render extremely efficient results ill the dispersion of metallic oxides such as Al2O3, ZrO2 and TiO2. Its dispersion mechanism upon these oxides outcomes from efficient complexation of the corresponding metallic cation, leading to chemisorption of the dispersant molecule upon the oxide surface. In the present work, the effect of Tiron on the stabilization of CuO particles in aqueous suspension is studied to clarify the dispersant's role in the change of colloidal properties and its underlying stabilization mechanism, and also to quantify processing conditions for the oxide. The molecule's dispersing effectiveness was studied through adsorption, theological and electrophoretic measurements, using both bare and surface charge modified copper oxide particles. The dispersant significantly decreases CuO suspensions' viscosity, increases particles' surface charge and strongly displaces the point of zero charge into the acidic direction. Dispersant/CUO interaction was assessed through FTIR analysis. It was concluded that, at the natural suspensions pH, the change of colloidal properties takes place through an inner-sphere complexation mechanism of the dispersant molecule alcohol groups upon hydroxyl groups at the oxide surface. This mechanism explains the obtained results, which demonstrate Tiron's high dispersion ability upon CuO particles in aqueous medium. (C) 2008 Elsevier Inc. All rights reserved.
机译:Tiron是一种阴离子表面活性剂,已知会分散金属氧化物(如Al2O3,ZrO2和TiO2)产生极其有效的结果。其在这些氧化物上的分散机理来自相应金属阳离子的有效络合,导致分散剂分子在氧化物表面上的化学吸附。在目前的工作中,研究了Tiron对水悬浮液中CuO颗粒的稳定作用,以阐明分散剂在胶体性质变化中的作用及其潜在的稳定机理,并量化氧化物的加工条件。使用裸电荷和表面电荷改性的氧化铜颗粒,通过吸附,神学和电泳测量研究了该分子的分散效果。分散剂显着降低了CuO悬浮液的粘度,增加了颗粒的表面电荷,并将零电荷点强烈移至酸性方向。通过FTIR分析评估分散剂/ CUO的相互作用。结论是,在天然悬浮液的pH值下,胶体性质的变化是通过分散剂分子醇基团在氧化物表面羟基上的内球络合机理发生的。该机理解释了所获得的结果,证明了Tiron对CuO颗粒在水性介质中的高分散能力。 (C)2008 Elsevier Inc.保留所有权利。

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