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交变电场诱导双组份软斥离子微凝胶胶体组装。

Alternating electric-field-induced assembly of binary mixtures of soft repulsive ionic microgel colloids.

机构信息

Polymer Science & Engineering Division, CSIR-National Chemical Laboratory, Pune 411008, India.

Polymer Science & Engineering Division, CSIR-National Chemical Laboratory, Pune 411008, India.

出版信息

J Colloid Interface Sci. 2019 May 15;544:88-95. doi: 10.1016/j.jcis.2019.02.075. Epub 2019 Feb 25.

Abstract

An external alternating electric field is used to study the assembly of a binary mixture of Poly(N-isopropylacrylamide-co-acrylic acid) microgels in their swollen form at hydrodynamic size ratio 2:1 under deprotonated state. The AC field experiments were carried out at a fixed frequency of 100 kHz in the fluid regime for three number density ratios 1:3, 1:1 and 3:1 of big-to-small microgels using a confocal microscope. Strings with different types of co-assembly structures such as buckled, ring, flame and sandwich have been observed at low and intermediate field strengths at ratio 1:3, 1:1. In buckled and ring type, one or two small particles sit at the contact of two big particles and in the flame type, small particles arrange like a cone at end of the string. In the sandwich structure, several double small particle layers lie in between big particles. At high field strength, aggregation of strings and a phase separation into individual aggregates of strings from both big and small microgels have been observed. At higher ratio 3:1, the string formation is mostly dominated by big particles. Our experimental results are discussed with the recent simulation and experimental works on AC field induced structures in binary hard sphere mixtures.

摘要

采用外部交流电场研究了在水力尺寸比为 2:1 的条件下,二元聚(N-异丙基丙烯酰胺-co-丙烯酸)微凝胶混合物在去质子化状态下溶胀时的组装情况。在流体状态下,使用共焦显微镜在固定频率为 100 kHz 的条件下,对三种大小微凝胶的数密度比 1:3、1:1 和 3:1 进行了 AC 场实验。在低场强和中场强下,比值为 1:3、1:1 时观察到了具有不同共组装结构类型的串,如褶皱、环、火焰和三明治。在褶皱和环型中,一个或两个小颗粒位于两个大颗粒的接触处,在火焰型中,小颗粒在串的末端排列成锥形。在三明治结构中,几个双层小颗粒层位于大颗粒之间。在高强度电场下,观察到串的聚集以及大、小微凝胶的串状聚集体的相分离。在更高的比值 3:1 下,串的形成主要由大颗粒主导。我们的实验结果与最近关于二元硬球混合物中交流电场诱导结构的模拟和实验工作进行了讨论。

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