首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Hydrogen Bonding and Interparticle Forces in Platelet alpha-Al2O3 Dispersions: Yield Stress and Zeta Potential
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Hydrogen Bonding and Interparticle Forces in Platelet alpha-Al2O3 Dispersions: Yield Stress and Zeta Potential

机译:氢键和血小板α-Al2O3分散体中的颗粒间作用力:屈服应力和ζ电位

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摘要

Adsorbed phosphate on smooth platelet alpha-Al2O3 particles at saturation surface coverage gives rise to strong interparticle attractive forces in dispersion. The maximum yield stress at the point of zero charge was increased by 2-fold. This was attributed to a high density of intermolecular hydrogen bonding between the adsorbed phosphate layers of the interacting particles. Adsorbed citrate at saturation surface coverage, however, reduced the maximum yield stress by 50%. It adsorbed to form a very effective steric barrier as intramolecular hydrogen bonding between -OH and the free terminal carboxylic group prevented strong interactions with other adsorbed citrate molecules residing on the second interacting particle. This steric barrier kept the interacting platelet particles further apart, thereby weakening the van der Waals attraction. The platelet alpha-Al2O3 dispersions were flocculated at all pH level. These dispersions displayed a maximum yield stress at the point of zero zeta potential at the pH approximate to 8.0. They also obeyed the yield stress-DLVO force model as characterized by a linear decrease in the yield stress with the square of the zeta potential.
机译:在饱和表面覆盖率的光滑血小板α-Al2O3颗粒上吸附的磷酸盐会在分散过程中产生强大的颗粒间吸引力。零电荷点的最大屈服应力增加了2倍。这归因于相互作用颗粒的吸附的磷酸盐层之间的分子间氢键的高密度。然而,在饱和表面覆盖率下吸附的柠檬酸盐将最大屈服应力降低了50%。它吸附形成非常有效的空间屏障,因为-OH和自由端羧基之间的分子内氢键阻止了与第二相互作用粒子上其他吸附的柠檬酸盐分子的强烈相互作用。该空间屏障使相互作用的血小板颗粒保持更远的距离,从而减弱了范德华力。血小板α-Al2O3分散液在所有pH值下均被絮凝。这些分散体在pH接近8.0的零ζ电位下显示出最大的屈服应力。他们还服从屈服应力-DLVO力模型,其特征在于屈服应力与zeta电位的平方呈线性下降。

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