Modulation of viscoelasticity and interfacial potential of polyelectrolyte brush by Ion-specific interactions

Akihisa Yamamoto, K. Hayashi, Ai Sumiya, F. Weissenfeld, Satoko Hinatsu, Wasim Abuillan, Masaki Nakahata, Motomu Tanaka
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引用次数: 1

Abstract

Polyelectrolyte brushes have drawn increasing attention because their physicochemical properties can be modulated by adjustment of the pH and ion concentration. Here, we report the controlled grafting of poly acrylic acid containing cysteine side chains onto supported lipid membranes to allow for the modulation of viscoelasticity as well as interfacial potential by ion-specific interactions, that is, with cadmium ions. Quartz crystal microbalance with dissipation indicated that the resonance frequency increased and the dissipation decreased as the cadmium concentration increased, attributed to the dehydration of brushes. Systematic variation of the molecular structure demonstrated that the coexistence of thiol and carboxyl moieties is necessary for the viscoelastic response, suggesting that these structural features, common with naturally occurring proteins, form complexes with cadmium ions. Analysis of the height fluctuation of colloidal particles by reflection interference contrast microscopy indicated that the change in the viscoelasticity of the polymer brush layer alters the curvature of the effective interfacial potential. Intriguingly, we found that modulation of the viscoelasticity and interfacial potential caused by calcium ions is weak, suggesting that the interaction is ion-specific. Polymer brushes that can alter the interfacial potential through changes in the degree of hydration opens new avenues for the design of smart, adaptable surfaces.
离子特异性相互作用对聚电解质电刷粘弹性和界面电位的调节
聚电解质电刷由于其物理化学性质可以通过调节pH和离子浓度来调节而受到越来越多的关注。在这里,我们报道了将含有半胱氨酸侧链的聚丙烯酸控制接枝到支持的脂质膜上,以允许通过离子特异性相互作用(即与镉离子)来调节粘弹性和界面电位。石英晶体耗散微天平表明,随着镉浓度的增加,共振频率增加,耗散减小,这是由于电刷脱水造成的。分子结构的系统变化表明,巯基和羧基部分的共存对于粘弹性响应是必要的,这表明这些结构特征与天然存在的蛋白质共同形成镉离子络合物。利用反射干涉对比显微镜对胶体粒子高度波动的分析表明,聚合物刷层粘弹性的变化改变了有效界面电位的曲率。有趣的是,我们发现钙离子引起的粘弹性和界面电位的调节很弱,这表明相互作用是离子特异性的。聚合物刷可以通过改变水化程度来改变界面电位,为设计智能、适应性强的表面开辟了新的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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