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聚电解质-纳米颗粒体系在二氧化硅上的吸附:对相互作用力的影响。

Adsorption of Polyelectrolyte-Nanoparticle Systems on Silica: Influence on Interaction Forces.

作者信息

Sennerfors T, Fröberg JC, Tiberg F

机构信息

Institute for Surface Chemistry, Stockholm, SE-114 86, Sweden

出版信息

J Colloid Interface Sci. 2000 Aug 1;228(1):127-134. doi: 10.1006/jcis.2000.6916.

Abstract

In this work, we have studied the interfacial properties of cationic polyelectrolyte (PE) and silica nanoparticle (NP) systems at macroscopic silica surfaces by means of ellipsometry. The influence of adsorbed layers on the interactions between silica surfaces was also investigated using the bimorph surface force apparatus. Added nanoparticles were observed to strongly swell the interfacial polyelectrolyte layers, an effect partly related to neutralization of charged polyelectrolyte groups. The effect was more pronounced for low charged than for highly charged polyelectrolytes. Overall, the presence of nanoparticles seemed to increase the repulsive interaction measured between silica surfaces. The force measured on approach was long range and quite strongly repulsive. On separation, an attractive bridging interaction was measured for polyelectrolyte-covered surfaces. For the low charged polyelectrolyte used in the study, the force turned repulsive on addition of nanoparticles. For the highly charged polyelectrolyte used, a change from a very strong attraction (involving a jump of the surfaces out of contact) to a very long-range elastic attractive force was observed on adding nanoparticles. The long-range elastic force indicates that polymer chains and nanoparticles form a transient network in the gap between the surfaces. The observed difference in the outward force curves may explain why the addition of nanoparticles appears to improve, e.g., shear-resistance and reflocculation characteristics of polymeric flocculants. Copyright 2000 Academic Press.

摘要

在这项工作中,我们通过椭偏测量法研究了阳离子聚电解质(PE)与二氧化硅纳米颗粒(NP)体系在宏观二氧化硅表面的界面性质。还使用双压电晶片表面力仪研究了吸附层对二氧化硅表面间相互作用的影响。观察到添加的纳米颗粒会使界面聚电解质层强烈膨胀,这种效应部分与带电聚电解质基团的中和有关。对于低电荷聚电解质,这种效应比高电荷聚电解质更明显。总体而言,纳米颗粒的存在似乎增加了在二氧化硅表面间测得的排斥相互作用。在接近过程中测得的力是长程且相当强的排斥力。在分离时,对于聚电解质覆盖的表面测得有吸引力的桥连相互作用。对于本研究中使用的低电荷聚电解质,添加纳米颗粒后力变为排斥力。对于所使用的高电荷聚电解质,添加纳米颗粒后观察到从非常强的吸引力(涉及表面跳出接触)转变为非常长程的弹性吸引力。这种长程弹力表明聚合物链和纳米颗粒在表面间的间隙中形成了一个瞬态网络。观察到的向外力曲线的差异可能解释了为什么添加纳米颗粒似乎能改善例如聚合物絮凝剂的抗剪切性和再絮凝特性。版权所有2000年学术出版社。

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