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表面活性剂对聚苯胺颗粒悬浮液稳定性和电流变性能的影响

Surfactant Effect on the Stability and Electrorheological Properties of Polyaniline Particle Suspension.

作者信息

Lee HJ, Yang SM, Park OO

机构信息

Bioprocess Engineering Research Center, Korea Advanced Institute of Science and Technology, 373-1 Kusong-dong, Yusong-gu, Taejon 305-701, Korea

出版信息

J Colloid Interface Sci. 1998 Oct 15;206(2):424-438. doi: 10.1006/jcis.1998.5661.

Abstract

In this paper, the colloidal stability and electrorheological responses of semi-conductive polyaniline particles dispersed in a mineral oil were investigated experimentally. The polyaniline was synthesized by polymerization of aniline monomer. The surfactants used for the colloidal stability were commercially available nonionic Span20, Span80, and Span85, which are distinctly different in their molecular structures. Dynamic yield stress of polyaniline suspension, which possessed the quadratic dependence on electric field strength at low electric field, exhibited the linear dependence at high electric field. In addition, the conductivity of polyaniline particles influenced the electrorheological response and there existed the optimal conductivity for the maximum yield stress. In the presence of nonionic surfactants used here, the yield stress of polyaniline exhibited a local maximum at a certain surfactant concentration. The existence of optimal surfactant concentration was confirmed by the surfactant adsorption isotherm. We hypothesized that below the optimal threshold concentration, the electrorheological activity was enhanced by the increased interfacial polarization induced by the adsorbed surfactant molecules. Above the threshold concentration, however, the electrorheological activity was degraded by the conduction through the field-induced surfactant-rich bridge between adjacent particles. This optimal concentration coincided with the saturation concentration in the adsorption isotherm. The surfactants used in this study showed the improved colloidal stability due mainly to the induced steric hindrance effect. For the colloidal stability, Span80 was the most effective. However, considering that ER activity comes mainly from relatively large particles of O(µm), which are mostly present in our system, Span85 was the best choice for a stabilizing additive in the present ER suspension. In addition, our results showed that the presence of the nonionic surfactants considered here did not cause any sensible degradation at high temperatures. Copyright 1998 Academic Press.

摘要

本文通过实验研究了分散在矿物油中的半导体聚苯胺颗粒的胶体稳定性和电流变响应。聚苯胺由苯胺单体聚合而成。用于胶体稳定的表面活性剂为市售的非离子型Span20、Span80和Span85,它们的分子结构明显不同。聚苯胺悬浮液的动态屈服应力在低电场下与电场强度呈二次方关系,在高电场下呈线性关系。此外,聚苯胺颗粒的电导率影响电流变响应,存在使屈服应力最大的最佳电导率。在此处使用的非离子表面活性剂存在的情况下,聚苯胺的屈服应力在一定表面活性剂浓度下出现局部最大值。表面活性剂吸附等温线证实了最佳表面活性剂浓度的存在。我们假设,在最佳阈值浓度以下,吸附的表面活性剂分子诱导的界面极化增强,从而提高电流变活性。然而,在阈值浓度以上,相邻颗粒之间由电场诱导的富含表面活性剂的桥传导导致电流变活性降低。这个最佳浓度与吸附等温线中的饱和浓度一致。本研究中使用的表面活性剂主要由于诱导的空间位阻效应而表现出更好的胶体稳定性。对于胶体稳定,Span80最有效。然而,考虑到电流变活性主要来自我们体系中大多存在的相对较大的O(µm)颗粒,Span85是当前电流变悬浮液中稳定添加剂的最佳选择。此外,我们的结果表明,此处考虑的非离子表面活性剂的存在在高温下不会导致任何明显的降解。版权所有1998年学术出版社。

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