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表面电导率对 TiO2 纳米颗粒表观 ζ 电位的影响。

Influence of surface conductivity on the apparent zeta potential of TiO2 nanoparticles.

机构信息

BRGM, French Geological Survey, Orléans, France.

出版信息

J Colloid Interface Sci. 2011 Apr 15;356(2):442-53. doi: 10.1016/j.jcis.2011.01.016. Epub 2011 Jan 11.

Abstract

Zeta potential is a physico-chemical parameter of particular importance in describing ion adsorption and electrostatic interactions between charged particles. Nevertheless, this fundamental parameter is ill-constrained, because its experimental interpretation is complex, particularly for very small and charged TiO(2) nanoparticles. The excess of electrical charge at the interface is responsible for surface conductance, which can significantly lower the electrophoretic measurements, and hence the apparent zeta potential. Consequently, the intrinsic zeta potential can have a larger amplitude, even in the case of simple 1:1 electrolytes like NaCl and KCl. Surface conductance of TiO(2) nanoparticles immersed in a NaCl solution is estimated using a surface complexation model, and this parameter and particle size are incorporated into Henry's model in order to determine a constrained value of the zeta potential from electrophoresis. Interior conductivity of the agglomerates is calculated using a differential self-consistent model. The amplitude of estimated zeta potential is greater than that derived from the von Smoluchowski equation and corresponds to the electric potential at the outer Helmholtz plane calculated by our surface complexation model. Consequently, the shear plane may be located close to the OHP, contradicting the assumption of the presence of a stagnant diffuse layer at the TiO(2)/water interface.

摘要

Zeta 电位是描述带电粒子之间离子吸附和静电相互作用的物理化学参数,具有特别重要的意义。然而,这个基本参数是约束不足的,因为其实验解释很复杂,对于非常小的带电 TiO(2)纳米粒子尤其如此。界面处的过量电荷负责表面电导,这会显著降低电泳测量,从而降低表观 zeta 电位。因此,即使在简单的 1:1 电解质(如 NaCl 和 KCl)的情况下,固有 zeta 电位也可能具有更大的幅度。通过表面络合模型估计浸入 NaCl 溶液中的 TiO(2)纳米粒子的表面电导,将该参数和颗粒大小纳入 Henry 模型,以便从电泳确定受约束的 zeta 电位值。团聚体的内部电导率使用差分自洽模型计算。估计的 zeta 电位的幅度大于由 von Smoluchowski 方程得出的幅度,并且对应于我们的表面络合模型计算的外亥姆霍兹平面的电势。因此,剪切平面可能靠近 OHP,这与 TiO(2)/水界面存在停滞扩散层的假设相矛盾。

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