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聚(异丙基丙烯酰胺)对盐浓度和阴离子种类的响应:刷状-刷状研究。

Poly(-isopropylacrylamide) Response to Salt Concentration and Anion Identity: A Brush-on-Brush Study.

机构信息

Priority Research Centre for Advanced Particle Processing and Transport , University of Newcastle , Callaghan , NSW 2308 , Australia.

出版信息

Langmuir. 2019 Aug 20;35(33):10818-10830. doi: 10.1021/acs.langmuir.9b00695. Epub 2019 Aug 5.

Abstract

The stability of poly(-isopropylacrylamide) (PNIPAM) brush-modified colloidal silica particles was compared to asymmetric and symmetric PNIPAM brush direct force measurements in the presence of 1, 10, and 500 mM aqueous salt solution of KCl, KNO, and KSCN between 10 and 45 °C. Dynamic light scattering measurements highlighted subtle variations in the salt-mediated thermoresponse, while atomic force microscopy (AFM) force curves between a bare silica or PNIPAM brush-modified colloid probe and a planar PNIPAM brush elucidated differences in brush interactions. The AFM force curves in the presence of KCl primarily revealed steric interactions between the surfaces, while KNO and KSCN solutions exhibited electrosteric interactions on approach as a function of the chaotropic nature of the ion and the solution concentration. The symmetric PNIPAM brush interaction highlighted significant variations between KCl and KSCN at 1 and 500 mM concentrations, while the approach and retraction force curves were relatively similar at 10 mM concentration. The combination of these techniques enabled the stability of PNIPAM brush-modified colloidal dispersions in the presence of electrolyte to be better understood with specific ion binding and the solution Debye length playing a significant role.

摘要

在 10 至 45°C 之间,对比了聚(异丙基丙烯酰胺)(PNIPAM)刷改性胶体二氧化硅颗粒在 1、10 和 500mM 氯化钾(KCl)、硝酸钾(KNO3)和硫氰化钾(KSCN)水溶液中的稳定性与不对称和对称 PNIPAM 刷直接力测量。动态光散射测量突出了盐介导的热响应中的细微变化,而原子力显微镜(AFM)在裸二氧化硅或 PNIPAM 刷改性胶体探针和平面 PNIPAM 刷之间的力曲线阐明了刷相互作用的差异。在 KCl 存在下的 AFM 力曲线主要揭示了表面之间的空间相互作用,而 KNO3 和 KSCN 溶液在接近时表现出电动空间相互作用,这取决于离子的离液特性和溶液浓度。对称的 PNIPAM 刷相互作用突出了在 1 和 500mM 浓度下 KCl 和 KSCN 之间的显著差异,而在 10mM 浓度下,接近和缩回力曲线相对相似。这些技术的结合使我们能够更好地理解电解质存在下 PNIPAM 刷改性胶体分散体的稳定性,其中特定离子结合和溶液德拜长度起着重要作用。

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