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质子抽吸引起保湿多孔硅质胶体的荷电反转。

Charge reversal of moisturous porous silica colloids by take-up of protons.

机构信息

Institute for Theoretical Physics, Utrecht University, Utrecht, The Netherlands.

出版信息

J Colloid Interface Sci. 2012 Nov 1;385(1):66-72. doi: 10.1016/j.jcis.2012.06.048. Epub 2012 Jun 27.

Abstract

The net charge of porous Stöber silica colloids is studied using a modified Poisson-Boltzmann theory in a spherical cell, with a focus on the case of water-filled porous silica particles suspended in a non-aqueous solvent. We show that the silica's usual negative surface charge, due to deprotonisation of the Si-OH group, is counteracted by an excess uptake of protons in the water-filled pores of the particle at low enough pH. A small volume fraction of pores suffices to induce a point of zero charge at pH≈4. Based on the difference in Donnan potential between the porous medium and the solvent a relation can be constructed that describes the location of the point of zero charge analytically. The accuracy of this relation is confirmed by numerical calculations. For Stöber silica in water we find a charge reversal below pH≈3, which is in this case solely a result of the selective uptake of cations in the porous network.

摘要

采用球形单元内修正后的泊松-玻尔兹曼理论研究了多孔 Stöber 硅溶胶的有效电荷,重点关注了在非水溶剂中悬浮的多孔硅颗粒水填充的情况。我们发现,由于 Si-OH 基团的去质子化,硅的通常负表面电荷被颗粒水填充孔中过多的质子吸收所抵消,在足够低的 pH 值下,这足以导致零电荷点。一小部分孔足以在 pH≈4 时产生零电荷点。基于多孔介质和溶剂之间的 Donnan 势差,可以构建一个关系,以解析方式描述零电荷点的位置。该关系的准确性通过数值计算得到了证实。对于水中的 Stöber 硅,我们发现 pH≈3 以下的电荷反转,在这种情况下,这仅仅是由于在多孔网络中阳离子的选择性吸收。

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